Academic

William M. Jacobs

Chemistry · 0000-0003-0574-4319 · Princeton University

Citations received by year

OpenAlex · CV works

Series: Citations received.01002003004002013 Citations received 112014 Citations received 332015 Citations received 17172016 Citations received 44442017 Citations received 59592018 Citations received 94942019 Citations received 69692020 Citations received 1871872021 Citations received 2942942022 Citations received 3073072023 Citations received 3083082024 Citations received 3333332025 Citations received 3973972026 Citations received 2262262013201620182020202220242026Citations receivedCalendar year
Series: Citations received.01002003004002013 Citations received 12014 Citations received 32015 Citations received 172016 Citations received 442017 Citations received 592018 Citations received 942019 Citations received 692020 Citations received 1872021 Citations received 2942022 Citations received 3072023 Citations received 3082024 Citations received 3332025 Citations received 3972026 Citations received 2262013201620182020202220242026Citations receivedCalendar year

No verified Scholar annual history. OpenAlex reports annual counts for 38 of 40 counted CV works. Bars sum the available counts; coverage can differ by year. Missing years are unknown. OpenAlex histories cover a limited recent window. 2026 is an incomplete calendar year.

Publications

40 rows

2025 Assembly of complex colloidal systems using DNA Annual Review of Condensed Matter Physics article journal CV OA GS

CV span

lines 107–109 · CV · published

107W.M. Jacobs∗and W.B. Rogers∗, “Assembly of complex colloidal systems using DNA,”108Ann. Rev. Condens. Matt. Phys. 16, 443–463 (2025).109(∗Co-corresponding authors)

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs∗; W.B. Rogers∗
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Assembly of complex colloidal systems using DNAAssembly of Complex Colloidal Systems Using DNAAssembly of Complex Colloidal Systems Using DNA
year cv 202520242025
venue crossref Ann. Rev. Condens. Matt. Phys.arXiv (Cornell University)Annual Review of Condensed Matter PhysicsAnnual Review of Condensed Matter Physics
kind cv articleworking_paperreview
DOI crossref 10.1146/annurev-conmatphys-032922-11313810.48550/arxiv.2409.0898810.1146/annurev-conmatphys-032922-113138
preprint DOI openalex 10.48550/arxiv.2409.08988
first author openalex JacobsJacobsJacobs

Citations

OpenAlex
21
Scholar
none
OpenAlex with related records
22
DOI
10.1146/annurev-conmatphys-032922-113138
OpenAlex
W4408278645

Match decisions

  • doi merged · 1.00 · Run 18
2025 Cooperation and competition of basepairing and electrostatic interactions in mixtures of DNA nanostars and polylysine Journal of the American Chemical Society article journal CV OA GS

CV span

lines 84–87 · CV · published

84G.R. Abraham, T. Li, A. Nguyen, W.M. Jacobs∗, and O.A. Saleh∗, “Cooperation and competition of85basepairing and electrostatic interactions in mixtures of DNA nanostars and polylysine,”86J. Am. Chem. Soc. 147, 42452–42461 (2025).87(∗Co-corresponding authors)

Institution fields

Peer reviewed
yes
First author
Abraham
Co-authors
G.R. Abraham; T. Li; A. Nguyen; W.M. Jacobs∗; O.A. Saleh∗
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Cooperation and competition of basepairing and electrostatic interactions in mixtures of DNA nanostars and polylysineCooperation and Competition of Base Pairing and Electrostatic Interactions in Mixtures of DNA Nanostars and Polylysine
year cv 20252025
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/jacs.5c1243610.1021/jacs.5c12436
first author openalex AbrahamAbraham

Citations

OpenAlex
1
Scholar
none
DOI
10.1021/jacs.5c12436
OpenAlex
W4412823038

Match decisions

  • doi merged · 1.00 · Run 18
2025 Dynamical phase transition in the growth of programmable polymorphic materials Physical Review Materials article journal CV OA GS

CV span

lines 99–101 · CV · published

99F. Chen and W.M. Jacobs, “Dynamical phase transition in the growth of programmable polymorphic100materials,” Phys. Rev. Mater. 9, 053403 (2025).101†Selected as a PRMaterials Editors’ Suggestion.

Institution fields

Peer reviewed
yes
First author
Chen
Co-authors
F. Chen; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Dynamical phase transition in the growth of programmable polymorphic materialsDynamical phase transition in the growth of programmable polymorphic materials
year cv 20252025
venue crossref Phys. Rev. Mater.Physical Review MaterialsPhysical Review Materials
kind cv articlearticle
DOI crossref 10.1103/physrevmaterials.9.05340310.1103/physrevmaterials.9.053403
first author openalex ChenChen

Citations

OpenAlex
1
Scholar
none
DOI
10.1103/physrevmaterials.9.053403
OpenAlex
W4410597343

Match decisions

  • doi merged · 1.00 · Run 18
2025 Interfacial effects determine nonequilibrium phase behaviors in chemically driven fluids Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 93–94 · CV · published

93Y. Cho and W.M. Jacobs, “Interfacial effects determine nonequilibrium phase behaviors in94chemically driven fluids,” Proc. Natl. Acad. Sci. U.S.A. 122, e2501145122 (2025).

Institution fields

Peer reviewed
yes
First author
Cho
Co-authors
Y. Cho; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Interfacial effects determine nonequilibrium phase behaviors in chemically driven fluidsInterfacial effects determine nonequilibrium phase behaviors in chemically driven fluidsInterfacial Effects Determine Nonequilibrium Phase Behaviors in Chemically Driven Fluids
year cv 202520252025
venue crossref Proc. Natl. Acad. Sci. U.S.A.Proceedings of the National Academy of SciencesarXiv (Cornell University)Proceedings of the National Academy of Sciences
kind cv articlearticleworking_paper
DOI crossref 10.1073/pnas.250114512210.1073/pnas.250114512210.48550/arxiv.2505.16824
preprint DOI openalex 10.48550/arxiv.2505.16824
first author openalex ChoChoCho

Citations

OpenAlex
8
Scholar
none
DOI
10.1073/pnas.2501145122
OpenAlex
W4412603065

Match decisions

  • doi merged · 1.00 · Run 18
2025 Multi-objective optimization for targeted self-assembly among competing polymorphs Physical Review X article journal CV OA GS

CV span

lines 111–112 · CV · published

111S. Chatterjee and W.M. Jacobs, “Multi-objective optimization for targeted self-assembly among112competing polymorphs,” Phys. Rev. X 15, 011075 (2025).

Institution fields

Peer reviewed
yes
First author
Chatterjee
Co-authors
S. Chatterjee; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Multi-objective optimization for targeted self-assembly among competing polymorphsMulti-objective optimization for targeted self-assembly among competing polymorphsMultiobjective Optimization for Targeted Self-Assembly among Competing Polymorphs
year cv 202520242025
venue crossref Phys. Rev. XarXiv (Cornell University)Physical Review XPhysical Review X
kind cv articleworking_paperarticle
DOI crossref 10.1103/physrevx.15.01107510.48550/arxiv.2401.1123410.1103/physrevx.15.011075
preprint DOI openalex 10.48550/arxiv.2401.11234
first author openalex ChatterjeeChatterjeeChatterjee

Citations

OpenAlex
7
Scholar
none
OpenAlex with related records
8
DOI
10.1103/physrevx.15.011075
OpenAlex
W4409013979

Match decisions

  • doi merged · 1.00 · Run 18
2025 Predicting heteropolymer phase separation using two-chain contact maps The Journal of Chemical Physics article journal CV OA GS

CV span

lines 96–97 · CV · published

96J. Jin, W. Oliver, M.A. Webb, and W.M. Jacobs, “Predicting heteropolymer phase separation using97two-chain contact maps,” J. Chem. Phys. 163, 014102 (2025).

Institution fields

Peer reviewed
yes
First author
Jin
Co-authors
J. Jin; W. Oliver; M.A. Webb; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Predicting heteropolymer phase separation using two-chain contact mapsPredicting heteropolymer phase separation using two-chain contact maps
year cv 20252025
venue crossref J. Chem. Phys.The Journal of Chemical PhysicsThe Journal of Chemical Physics
kind cv articlearticle
DOI crossref 10.1063/5.026950410.1063/5.0269504
first author openalex JinJin

Citations

OpenAlex
4
Scholar
none
DOI
10.1063/5.0269504
OpenAlex
W4408588602

Match decisions

  • doi merged · 1.00 · Run 18
2025 The underappreciated role of nonspecific interactions in the crystallization of DNA-coated colloids Soft Matter article journal CV OA GS

CV span

lines 103–106 · CV · published

103H. Seyforth, T.E. Videbæk, M. Mondal, S. Chatterjee, W.M. Jacobs∗, and W.B. Rogers∗, “The104underappreciated role of nonspecific interactions in the crystallization of DNA-coated colloids,”105Soft Matter 21, 2654 (2025).106(∗Co-corresponding authors)

Institution fields

Peer reviewed
yes
First author
Seyforth
Co-authors
H. Seyforth; T.E. Videbæk; M. Mondal; S. Chatterjee; W.M. Jacobs∗; W.B. Rogers∗
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The underappreciated role of nonspecific interactions in the crystallization of DNA-coated colloidsThe underappreciated role of nonspecific interactions in the crystallization of DNA-coated colloidsThe underappreciated role of nonspecific interactions in the crystallization of DNA-coated colloids
year cv 202520252025
venue crossref Soft MatterarXiv (Cornell University)Soft Matter
kind cv articleworking_paperarticle
DOI crossref 10.1039/d5sm00001g10.48550/arxiv.2501.0222010.1039/d5sm00001g
preprint DOI openalex 10.48550/arxiv.2501.02220
first author openalex SeyforthSeyforthSeyforth

Citations

OpenAlex
3
Scholar
none
DOI
10.1039/d5sm00001g
OpenAlex
W4408330271

Match decisions

  • classified merged · 0.99 · Run 18 resolved by the OpenAlex classification: excluded
2025 When B2 is not enough: Investigating simple metrics to assess phase behavior of intrinsically disordered proteins The Journal of Physical Chemistry B article journal CV OA GS

CV span

lines 89–91 · CV · published

89W. Oliver, W.M. Jacobs, and M.A. Webb, “When B2 is not enough: Investigating simple metrics to90assess phase behavior of intrinsically disordered proteins,” J. Phys. Chem. B 129, 9551–956591(2025).

Institution fields

Peer reviewed
yes
First author
Oliver
Co-authors
W. Oliver; W.M. Jacobs; M.A. Webb
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv When B2 is not enough: Investigating simple metrics to assess phase behavior of intrinsically disordered proteinsWhen B2 is Not Enough: Evaluating Simple Metrics for Predicting Phase Separation of Intrinsically Disordered ProteinsWhen $B_2$ is Not Enough: Evaluating Simple Metrics for Predicting Phase Separation of Intrinsically Disordered Proteins
year cv 202520252025
venue openalex J. Phys. Chem. BThe Journal of Physical Chemistry BarXiv (Cornell University)
kind cv articlearticleworking_paper
DOI openalex 10.1021/acs.jpcb.5c0495510.48550/arxiv.2507.12312
preprint DOI openalex 10.48550/arxiv.2507.12312
first author openalex OliverOliverOliver

Citations

OpenAlex
5
Scholar
none
DOI
10.1021/acs.jpcb.5c04955
OpenAlex
W4414007665

Match decisions

  • gemini merged · 0.95 · Run 18 The CV record matches the Journal of Physical Chemistry B preprint/publication by title and authors, with the OpenAlex record providing the DOI.
2024 Active learning of the thermodynamics–dynamics tradeoff in protein condensates Science Advances article journal CV OA GS

CV span

lines 129–131 · CV · published

129Y. An, M.A. Webb∗, and W.M. Jacobs∗, “Active learning of the thermodynamics–dynamics tradeoff130in protein condensates,” Sci. Adv. 10, adj2448 (2024).131(∗Co-corresponding authors)

Institution fields

Peer reviewed
yes
First author
An
Co-authors
Y. An; M.A. Webb∗; W.M. Jacobs∗
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Active learning of the thermodynamics–dynamics tradeoff in protein condensatesActive learning of the thermodynamics–dynamics tradeoff in protein condensatesActive learning of the thermodynamics-dynamics tradeoff in protein condensatesActive learning of the thermodynamics-dynamics trade-off in protein condensates
year cv 2024202320232024
venue crossref Sci. Adv.bioRxiv (Cold Spring Harbor Laboratory)arXiv (Cornell University)Science AdvancesScience Advances
kind cv articleworking_paperworking_paperarticle
DOI crossref 10.1126/sciadv.adj244810.1101/2023.06.06.54388410.48550/arxiv.2306.0369610.1126/sciadv.adj2448
preprint DOI openalex 10.1101/2023.06.06.54388410.48550/arxiv.2306.03696
first author openalex AnAnAnAn

Also recorded as

Citations

OpenAlex
45
Scholar
none
OpenAlex with related records
49
DOI
10.1126/sciadv.adj2448
OpenAlex
W4390604183

Match decisions

  • doi merged · 1.00 · Run 18
2024 Competition between self-assembly and phase separation governs high-temperature condensation of a DNA liquid Physical Review Letters article journal CV OA GS

CV span

lines 124–127 · CV · published

124O. Hegde, T. Li, A. Sharma, M. Borja, W.M. Jacobs∗, and W.B. Rogers∗, “Competition between125self-assembly and phase separation governs high-temperature condensation of a DNA liquid,”126Phys. Rev. Lett. 132, 208401 (2024).127(∗Co-corresponding authors)

Institution fields

Peer reviewed
yes
First author
Hegde
Co-authors
O. Hegde; T. Li; A. Sharma; M. Borja; W.M. Jacobs∗; W.B. Rogers∗
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Competition between self-assembly and phase separation governs high-temperature condensation of a DNA liquidCompetition between self-assembly and phase separation governs high-temperature condensation of a DNA liquidCompetition between Self-Assembly and Phase Separation Governs High-Temperature Condensation of a DNA Liquid
year cv 202420232024
venue crossref Phys. Rev. Lett.arXiv (Cornell University)Physical Review LettersPhysical Review Letters
kind cv articleworking_paperarticle
DOI crossref 10.1103/physrevlett.132.20840110.48550/arxiv.2301.0613410.1103/physrevlett.132.208401
preprint DOI openalex 10.48550/arxiv.2301.06134
first author openalex HegdeHegdeHegde

Citations

OpenAlex
7
Scholar
none
DOI
10.1103/physrevlett.132.208401
OpenAlex
W4396885631

Match decisions

  • doi merged · 1.00 · Run 18
2024 Emergence of multiphase condensates from a limited set of chemical building blocks Journal of Chemical Theory and Computation article journal CV OA GS

CV span

lines 117–118 · CV · published

117F. Chen and W.M. Jacobs, “Emergence of multiphase condensates from a limited set of chemical118building blocks,” J. Chem. Theory Comput. 20, 6881–6889 (2024).

Institution fields

Peer reviewed
yes
First author
Chen
Co-authors
F. Chen; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Emergence of multiphase condensates from a limited set of chemical building blocksEmergence of multiphase condensates from a limited set of chemical building blocksEmergence of multiphase condensates from a limited set of chemical building blocksEmergence of Multiphase Condensates from a Limited Set of Chemical Building Blocks
year cv 2024202320232024
venue crossref J. Chem. Theory Comput.bioRxiv (Cold Spring Harbor Laboratory)arXiv (Cornell University)Journal of Chemical Theory and ComputationJournal of Chemical Theory and Computation
kind cv articleworking_paperworking_paperarticle
DOI crossref 10.1021/acs.jctc.4c0032310.1101/2023.11.30.56943910.48550/arxiv.2311.1814210.1021/acs.jctc.4c00323
preprint DOI openalex 10.1101/2023.11.30.56943910.48550/arxiv.2311.18142
first author openalex ChenChenChenChen

Also recorded as

Citations

OpenAlex
17
Scholar
none
OpenAlex with related records
20
DOI
10.1021/acs.jctc.4c00323
OpenAlex
W4401121337

Match decisions

  • doi merged · 1.00 · Run 18
2024 Interplay of condensation and chromatin binding underlies BRD4 targeting Molecular Biology of the Cell article journal CV OA GS

CV span

lines 120–122 · CV · published

120A.R. Strom, J.M. Eeftens, Y. Polyachenko, C. Weaver, H. Watanabe, D. Bracha, N. Orlovsky,121C. Jumper, W.M. Jacobs, and C.P. Brangwynne, “Interplay of condensation and chromatin122binding underlies BRD4 targeting,” Mol. Biol. Cell 35, ar88 (2024).

Institution fields

Peer reviewed
yes
First author
Strom
Co-authors
A.R. Strom; J.M. Eeftens; Y. Polyachenko; C. Weaver; H. Watanabe; D. Bracha; N. Orlovsky; C. Jumper; W.M. Jacobs; C.P. Brangwynne
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Interplay of condensation and chromatin binding underlies BRD4 targetingInterplay of condensation and chromatin binding underlies BRD4 targetingInterplay of condensation and chromatin binding underlies BRD4 targeting
year cv 202420242024
venue crossref Mol. Biol. CellbioRxiv (Cold Spring Harbor Laboratory)Molecular Biology of the CellMolecular Biology of the Cell
kind cv articleworking_paperarticle
DOI crossref 10.1091/mbc.e24-01-004610.1101/2024.02.07.57938410.1091/mbc.e24-01-0046
preprint DOI openalex 10.1101/2024.02.07.579384
first author openalex StromStromStrom

Citations

OpenAlex
40
Scholar
none
OpenAlex with related records
43
DOI
10.1091/mbc.e24-01-0046
OpenAlex
W4395071395

Match decisions

  • doi merged · 1.00 · Run 18
2024 Predicting the morphology of multiphase biomolecular condensates from protein interaction networks PRX Life article journal CV OA GS

CV span

lines 114–115 · CV · published

114T. Li and W.M. Jacobs, “Predicting the morphology of multiphase biomolecular condensates from115protein interaction networks,” PRX Life 2, 023013 (2024).

Institution fields

Peer reviewed
yes
First author
Li
Co-authors
T. Li; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Predicting the morphology of multiphase biomolecular condensates from protein interaction networksPredicting the morphology of multiphase biomolecular condensates from protein interaction networksPredicting the Morphology of Multiphase Biomolecular Condensates from Protein Interaction Networks
year cv 202420232024
venue crossref PRX LifearXiv (Cornell University)PRX Life
kind cv articleworking_paperarticle
DOI crossref 10.1103/prxlife.2.02301310.48550/arxiv.2312.0280610.1103/prxlife.2.023013
preprint DOI openalex 10.48550/arxiv.2312.02806
first author openalex LiLiLi

Citations

OpenAlex
10
Scholar
none
OpenAlex with related records
12
DOI
10.1103/prxlife.2.023013
OpenAlex
W4399856373

Match decisions

  • gemini merged · 0.99 · Run 18 The CV entry matches the OpenAlex record via identical DOI and publication venue for PRX Life.
2024 The critical role of co-translational folding: An evolutionary and biophysical perspective Current Opinion in Systems Biology article journal CV OA GS

CV span

lines 133–134 · CV · published

133A. Bitran, W.M. Jacobs, and E.I. Shakhnovich, “The critical role of co-translational folding: An134evolutionary and biophysical perspective,” Curr. Opin. Systems Biol. 37, 100485 (2024).

Institution fields

Peer reviewed
yes
First author
Bitran
Co-authors
A. Bitran; W.M. Jacobs; E.I. Shakhnovich
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv The critical role of co-translational folding: An evolutionary and biophysical perspectiveThe critical role of co-translational folding: An evolutionary and biophysical perspective
year cv 20242023
venue crossref Curr. Opin. Systems Biol.Current Opinion in Systems BiologyCurrent Opinion in Systems Biology
kind cv articlereview
DOI crossref 10.1016/j.coisb.2023.10048510.1016/j.coisb.2023.100485
first author openalex BitranBitran

Citations

OpenAlex
7
Scholar
none
DOI
10.1016/j.coisb.2023.100485
OpenAlex
W4388924074

Match decisions

  • doi merged · 1.00 · Run 18
2023 Interplay between self-assembly and phase separation in a polymer-complex model Physical Review E article journal CV OA GS

CV span

lines 136–137 · CV · published

136T. Li, W.B. Rogers, and W.M. Jacobs, “Interplay between self-assembly and phase separation in a137polymer-complex model,” Phys. Rev. E 108, 064501 (2023).

Institution fields

Peer reviewed
yes
First author
Li
Co-authors
T. Li; W.B. Rogers; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Interplay between self-assembly and phase separation in a polymer-complex modelInterplay between self-assembly and phase separation in a polymer-complex modelInterplay between self-assembly and phase separation in a polymer-complex model
year cv 202320232023
venue crossref Phys. Rev. EarXiv (Cornell University)Physical review. EPhysical Review E
kind cv articleworking_paperarticle
DOI crossref 10.1103/physreve.108.06450110.48550/arxiv.2306.1319810.1103/physreve.108.064501
preprint DOI openalex 10.48550/arxiv.2306.13198
first author openalex LiLiLi

Citations

OpenAlex
9
Scholar
none
DOI
10.1103/physreve.108.064501
OpenAlex
W4389434170

Match decisions

  • doi merged · 1.00 · Run 18
2023 Macroscopic photonic single crystals via seeded growth of DNA-coated colloids Nature Communications article journal CV OA GS

CV span

lines 142–145 · CV · published

142A. Hensley, T.E. Videbæk, H. Seyforth, W.M. Jacobs∗, and W.B. Rogers∗, “Macroscopic photonic143single crystals via seeded growth of DNA-coated colloids,” Nat. Commun. 14, 4237 (2023).144(∗Co-corresponding authors)145[U.S. Provisional Patent Application No.: 63/380,258 (October 2022)]

Institution fields

Peer reviewed
yes
First author
Hensley
Co-authors
A. Hensley; T.E. Videbæk; H. Seyforth; W.M. Jacobs∗; W.B. Rogers∗
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Macroscopic photonic single crystals via seeded growth of DNA-coated colloidsMacroscopic photonic single crystals via seeded growth of DNA-coated colloids
year cv 20232023
venue crossref Nat. Commun.Nature CommunicationsNature Communications
kind cv articlearticle
DOI crossref 10.1038/s41467-023-39992-310.1038/s41467-023-39992-3
first author openalex HensleyHensley

Citations

OpenAlex
39
Scholar
none
DOI
10.1038/s41467-023-39992-3
OpenAlex
W4384408098

Match decisions

  • gemini merged · 0.99 · Run 18 Both records share the same DOI and title for the Nature Communications publication.
2023 Nonequilibrium interfacial properties in chemically driven fluids The Journal of Chemical Physics article journal CV OA GS

CV span

lines 139–140 · CV · published

139Y. Cho and W.M. Jacobs, “Nonequilibrium interfacial properties in chemically driven fluids,”140J. Chem. Phys. 159, 154101 (2023).

Institution fields

Peer reviewed
yes
First author
Cho
Co-authors
Y. Cho; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Nonequilibrium interfacial properties in chemically driven fluidsNonequilibrium interfacial properties of chemically driven fluidsNonequilibrium interfacial properties of chemically driven fluids
year cv 202320232023
venue crossref J. Chem. Phys.arXiv (Cornell University)The Journal of Chemical PhysicsThe Journal of Chemical Physics
kind cv articleworking_paperarticle
DOI crossref 10.1063/5.016682410.48550/arxiv.2307.0057910.1063/5.0166824
preprint DOI openalex 10.48550/arxiv.2307.00579
first author openalex ChoChoCho

Citations

OpenAlex
17
Scholar
none
DOI
10.1063/5.0166824
OpenAlex
W4387661699

Match decisions

  • doi merged · 1.00 · Run 18
2023 Programmable phase behavior in fluids with designable interactions The Journal of Chemical Physics article journal CV OA GS

CV span

lines 150–152 · CV · published

150F. Chen and W.M. Jacobs, “Programmable phase behavior in fluids with designable interactions,”151J. Chem. Phys. 158, 214118 (2023).152†Selected as a JCP Editors’ Pick.

Institution fields

Peer reviewed
yes
First author
Chen
Co-authors
F. Chen; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Programmable phase behavior in fluids with designable interactionsProgrammable phase behavior in fluids with designable interactionsProgrammable phase behavior in fluids with designable interactions
year cv 202320232023
venue crossref J. Chem. Phys.arXiv (Cornell University)The Journal of Chemical PhysicsThe Journal of Chemical Physics
kind cv articleworking_paperarticle
DOI crossref 10.1063/5.014721110.48550/arxiv.2301.1295810.1063/5.0147211
preprint DOI openalex 10.48550/arxiv.2301.12958
first author openalex ChenChenChen

Citations

OpenAlex
10
Scholar
none
DOI
10.1063/5.0147211
OpenAlex
W4379375333

Match decisions

  • doi merged · 1.00 · Run 18
2023 Theory and simulation of multiphase coexistence in biomolecular mixtures Journal of Chemical Theory and Computation article journal CV OA GS

CV span

lines 147–148 · CV · published

147W.M. Jacobs, “Theory and simulation of multiphase coexistence in biomolecular mixtures,”148J. Chem. Theory Comput. 19, 3429–3445 (2023).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
none
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Theory and simulation of multiphase coexistence in biomolecular mixturesTheory and simulation of multiphase coexistence in biomolecular mixturesTheory and Simulation of Multiphase Coexistence in Biomolecular Mixtures
year cv 202320232023
venue crossref J. Chem. Theory Comput.arXiv (Cornell University)Journal of Chemical Theory and ComputationJournal of Chemical Theory and Computation
kind cv articleworking_paperarticle
DOI crossref 10.1021/acs.jctc.3c0019810.48550/arxiv.2305.0315010.1021/acs.jctc.3c00198
preprint DOI openalex 10.48550/arxiv.2305.03150
first author openalex JacobsJacobsJacobs

Citations

OpenAlex
44
Scholar
none
DOI
10.1021/acs.jctc.3c00198
OpenAlex
W4379390563

Match decisions

  • doi merged · 1.00 · Run 18
2023 Tuning nucleation kinetics via nonequilibrium chemical reactions Physical Review Letters article journal CV OA GS

CV span

lines 154–155 · CV · published

154Y. Cho and W.M. Jacobs, “Tuning nucleation kinetics via nonequilibrium chemical reactions,”155Phys. Rev. Lett. 130, 128203 (2023).

Institution fields

Peer reviewed
yes
First author
Cho
Co-authors
Y. Cho; W.M. Jacobs
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Tuning nucleation kinetics via nonequilibrium chemical reactionsTuning nucleation kinetics via nonequilibrium chemical reactionsTuning Nucleation Kinetics via Nonequilibrium Chemical Reactions
year cv 202320222023
venue crossref Phys. Rev. Lett.arXiv (Cornell University)Physical Review LettersPhysical Review Letters
kind cv articleworking_paperarticle
DOI crossref 10.1103/physrevlett.130.12820310.48550/arxiv.2209.0054210.1103/physrevlett.130.128203
preprint DOI openalex 10.48550/arxiv.2209.00542
first author openalex ChoChoCho

Citations

OpenAlex
23
Scholar
none
DOI
10.1103/physrevlett.130.128203
OpenAlex
W4360847431

Match decisions

  • doi merged · 1.00 · Run 18
2022 Self-assembly of photonic crystals by controlling the nucleation and growth of DNA-coated colloids Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 157–160 · CV · published

157A. Hensley, W.M. Jacobs∗, and W.B. Rogers∗, “Self-assembly of photonic crystals by controlling the158nucleation and growth of DNA-coated colloids,” Proc. Natl. Acad. Sci. U.S.A. 119,159e2114050118 (2022).160(∗Co-corresponding authors)

Institution fields

Peer reviewed
yes
First author
Hensley
Co-authors
A. Hensley; W.M. Jacobs∗; W.B. Rogers∗
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Self-assembly of photonic crystals by controlling the nucleation and growth of DNA-coated colloidsSelf-assembly of photonic crystals by controlling the nucleation and growth of DNA-coated colloids
year cv 20222021
venue crossref Proc. Natl. Acad. Sci. U.S.A.Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articlearticle
DOI crossref 10.1073/pnas.211405011810.1073/pnas.2114050118
first author openalex HensleyHensley

Citations

OpenAlex
79
Scholar
none
DOI
10.1073/pnas.2114050118
OpenAlex
W4200073842

Match decisions

  • doi merged · 1.00 · Run 18
2021 Self-assembly of biomolecular condensates with shared components Physical Review Letters article journal CV OA GS

CV span

lines 162–164 · CV · published

162W.M. Jacobs, “Self-assembly of biomolecular condensates with shared components,”163Phys. Rev. Lett. 126, 258101 (2021).164†Selected as a PRL Editors’ Suggestion and highlighted in APS Physics.

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
none
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Self-assembly of biomolecular condensates with shared componentsSelf-Assembly of Biomolecular Condensates with Shared Components
year cv 20212021
venue crossref Phys. Rev. Lett.Physical Review LettersPhysical Review Letters
kind cv articlearticle
DOI crossref 10.1103/physrevlett.126.25810110.1103/physrevlett.126.258101
first author openalex JacobsJacobs

Citations

OpenAlex
81
Scholar
none
DOI
10.1103/physrevlett.126.258101
OpenAlex
W3131929255

Match decisions

  • doi merged · 1.00 · Run 18
2020 Competing protein–RNA interaction networks control multiphase intracellular organization Cell article journal CV OA GS

CV span

lines 165–166 · CV · published

165D.W. Sanders, . . ., W.M. Jacobs, P. Ivanov, and C.P. Brangwynne, “Competing protein–RNA166interaction networks control multiphase intracellular organization,” Cell 181, 306–324 (2020).

Institution fields

Peer reviewed
yes
First author
Sanders
Co-authors
D.W. Sanders; . . .; W.M. Jacobs; P. Ivanov; C.P. Brangwynne
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Competing protein–RNA interaction networks control multiphase intracellular organizationCompeting Protein-RNA Interaction Networks Control Multiphase Intracellular Organization
year cv 20202020
venue crossref CellCell
kind cv articlearticle
DOI crossref 10.1016/j.cell.2020.03.05010.1016/j.cell.2020.03.050
first author openalex SandersSanders

Citations

OpenAlex
873
Scholar
none
DOI
10.1016/j.cell.2020.03.050
OpenAlex
W3017159371

Match decisions

  • doi merged · 1.00 · Run 18
2020 Co-translational folding allows misfolding-prone proteins to circumvent deep kinetic traps Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 177–179 · CV · published

177A. Bitran, W.M. Jacobs, X. Zhai, and E.I. Shakhnovich, “Co-translational folding allows178misfolding-prone proteins to circumvent deep kinetic traps,” Proc. Natl. Acad. Sci. U.S.A.179117, 1485–1495 (2020).

Institution fields

Peer reviewed
yes
First author
Bitran
Co-authors
A. Bitran; W.M. Jacobs; X. Zhai; E.I. Shakhnovich
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Co-translational folding allows misfolding-prone proteins to circumvent deep kinetic trapsCo-translational folding allows misfolding-prone proteins to circumvent deep kinetic trapsCotranslational folding allows misfolding-prone proteins to circumvent deep kinetic traps
year cv 202020192020
venue crossref Proc. Natl. Acad. Sci. U.S.A.bioRxiv (Cold Spring Harbor Laboratory)Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articleworking_paperarticle
DOI crossref 10.1073/pnas.191320711710.1101/72161310.1073/pnas.1913207117
preprint DOI openalex 10.1101/721613
first author openalex BitranBitranBitran

Citations

OpenAlex
67
Scholar
none
OpenAlex with related records
68
DOI
10.1073/pnas.1913207117
OpenAlex
W3000413147

Match decisions

  • doi merged · 1.00 · Run 18
2020 Effect of protein structure on evolution of cotranslational folding Biophysical Journal article journal CV OA GS

CV span

lines 173–175 · CV · published

173V. Zhao, W.M. Jacobs, E.I. Shakhnovich, “Effect of protein structure on evolution of cotranslational174folding,” Biophys. J. 119, 1123–1134 (2020).175†Selected by the editor for Biophys. J. New & Notable.

Institution fields

Peer reviewed
yes
First author
Zhao
Co-authors
V. Zhao; W.M. Jacobs; E.I. Shakhnovich
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Effect of protein structure on evolution of cotranslational foldingEffect of protein structure on evolution of cotranslational foldingEffect of Protein Structure on Evolution of Cotranslational Folding
year cv 202020202020
venue crossref Biophys. J.bioRxiv (Cold Spring Harbor Laboratory)Biophysical JournalBiophysical Journal
kind cv articleworking_paperarticle
DOI crossref 10.1016/j.bpj.2020.06.03710.1101/2020.04.09.03388610.1016/j.bpj.2020.06.037
preprint DOI openalex 10.1101/2020.04.09.033886
first author openalex ZhaoZhaoZhao

Citations

OpenAlex
21
Scholar
none
OpenAlex with related records
22
DOI
10.1016/j.bpj.2020.06.037
OpenAlex
W3016153807

Match decisions

  • doi merged · 1.00 · Run 18
2020 Validation of DBFOLD: An efficient algorithm for computing folding pathways of complex proteins PLOS Computational Biology article journal CV OA GS

CV span

lines 170–171 · CV · published

170A. Bitran, W.M. Jacobs, E.I. Shakhnovich, “Validation of DBFOLD: An efficient algorithm for171computing folding pathways of complex proteins,” PLoS Comp. Biol. 16, e1008323 (2020).

Institution fields

Peer reviewed
yes
First author
Bitran
Co-authors
A. Bitran; W.M. Jacobs; E.I. Shakhnovich
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Validation of DBFOLD: An efficient algorithm for computing folding pathways of complex proteinsDBFOLD: An efficient algorithm for computing folding pathways of complex proteinsValidation of DBFOLD: An efficient algorithm for computing folding pathways of complex proteins
year cv 202020202020
venue crossref PLoS Comp. Biol.bioRxiv (Cold Spring Harbor Laboratory)PLoS Computational BiologyPLOS Computational Biology
kind cv articleworking_paperarticle
DOI crossref 10.1371/journal.pcbi.100832310.1101/2020.09.09.28911610.1371/journal.pcbi.1008323
preprint DOI openalex 10.1101/2020.09.09.289116
first author openalex BitranBitranBitran

Citations

OpenAlex
28
Scholar
none
DOI
10.1371/journal.pcbi.1008323
OpenAlex
W3106016894

Match decisions

  • doi merged · 1.00 · Run 18
2018 Accessibility of the Shine–Dalgarno sequence dictates N-terminal codon bias in E. coli Molecular Cell article journal CV OA GS

CV span

lines 188–191 · CV · published

188S. Bhattacharyya∗, W.M. Jacobs∗, B.V. Adkar, J. Yan, W. Zhang and E.I. Shakhnovich, “Accessibility189of the Shine–Dalgarno sequence dictates N-terminal codon bias in E. coli,” Mol. Cell 70,190894–905 (2018).191(∗Equal contribution)

Institution fields

Peer reviewed
yes
First author
Bhattacharyya
Co-authors
S. Bhattacharyya∗; W.M. Jacobs∗; B.V. Adkar; J. Yan; W. Zhang; E.I. Shakhnovich
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Accessibility of the Shine–Dalgarno sequence dictates N-terminal codon bias in E. coliAccessibility of the Shine–Dalgarno sequence dictates N-terminal codon bias in E. coliAccessibility of the Shine-Dalgarno Sequence Dictates N-Terminal Codon Bias in E. coli
year cv 201820172018
venue crossref Mol. CellbioRxiv (Cold Spring Harbor Laboratory)Molecular CellMolecular Cell
kind cv articleworking_paperarticle
DOI crossref 10.1016/j.molcel.2018.05.00810.1101/19572710.1016/j.molcel.2018.05.008
preprint DOI openalex 10.1101/195727
first author openalex BhattacharyyaBhattacharyyaBhattacharyya

Citations

OpenAlex
87
Scholar
none
OpenAlex with related records
88
DOI
10.1016/j.molcel.2018.05.008
OpenAlex
W2951916095

Match decisions

  • doi merged · 1.00 · Run 18
2018 Accurate protein-folding transition-path statistics from a simple free-energy landscape The Journal of Physical Chemistry B article journal CV OA GS

CV span

lines 181–182 · CV · published

181W.M. Jacobs and E.I. Shakhnovich, “Accurate protein-folding transition-path statistics from a182simple free-energy landscape,” J. Phys. Chem. B 122, 11126–11136 (2018).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; E.I. Shakhnovich
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Accurate protein-folding transition-path statistics from a simple free-energy landscapeAccurate protein-folding transition-path statistics from a simple free-energy landscapeAccurate Protein-Folding Transition-Path Statistics from a Simple Free-Energy Landscape
year cv 201820182018
venue crossref J. Phys. Chem. BbioRxiv (Cold Spring Harbor Laboratory)The Journal of Physical Chemistry BThe Journal of Physical Chemistry B
kind cv articleworking_paperarticle
DOI crossref 10.1021/acs.jpcb.8b0584210.1101/35029810.1021/acs.jpcb.8b05842
preprint DOI openalex 10.1101/350298
first author openalex JacobsJacobsJacobs

Citations

OpenAlex
0
Scholar
none
DOI
10.1021/acs.jpcb.8b05842
OpenAlex
W2950029602

Match decisions

  • doi merged · 1.00 · Run 18
2018 Direct observation and rational design of nucleation behavior in addressable self-assembly Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 184–186 · CV · published

184M. Sajfutdinow, W.M. Jacobs, A. Reinhardt, C. Schneider, and D. Smith, “Direct observation and185rational design of nucleation behavior in addressable self-assembly,”186Proc. Natl. Acad. Sci. U.S.A. 115, E5877–E5886 (2018).

Institution fields

Peer reviewed
yes
First author
Sajfutdinow
Co-authors
M. Sajfutdinow; W.M. Jacobs; A. Reinhardt; C. Schneider; D. Smith
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Direct observation and rational design of nucleation behavior in addressable self-assemblyDirect observation and rational design of nucleation behavior in addressable self-assembly
year cv 20182018
venue crossref Proc. Natl. Acad. Sci. U.S.A.Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articlearticle
DOI crossref 10.1073/pnas.180601011510.1073/pnas.1806010115
first author openalex SajfutdinowSajfutdinow

Citations

OpenAlex
31
Scholar
none
DOI
10.1073/pnas.1806010115
OpenAlex
W2775031315

Match decisions

  • doi merged · 1.00 · Run 18
2017 Evidence of evolutionary selection for co-translational folding Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 193–194 · CV · published

193W.M. Jacobs and E.I. Shakhnovich, “Evidence of evolutionary selection for co-translational folding,”194Proc. Natl. Acad. Sci. U.S.A. 114, 11434–11439 (2017).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; E.I. Shakhnovich
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Evidence of evolutionary selection for co-translational foldingEvidence of evolutionary selection for co-translational foldingEvidence of evolutionary selection for cotranslational folding
year cv 201720172017
venue crossref Proc. Natl. Acad. Sci. U.S.A.bioRxiv (Cold Spring Harbor Laboratory)Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articleworking_paperarticle
DOI crossref 10.1073/pnas.170577211410.1101/12187110.1073/pnas.1705772114
preprint DOI openalex 10.1101/121871
first author openalex JacobsJacobsJacobs

Citations

OpenAlex
113
Scholar
none
OpenAlex with related records
123
DOI
10.1073/pnas.1705772114
OpenAlex
W2951500013

Match decisions

  • doi merged · 1.00 · Run 18
2017 Phase transitions in biological systems with many components Biophysical Journal article journal CV OA GS

CV span

lines 196–198 · CV · published

196W.M. Jacobs and D. Frenkel, “Phase transitions in biological systems with many components,”197Biophys. J. 112, 683–691 (2017).198†Selected by the editor for Biophys. J. News & Views.

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; D. Frenkel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Phase transitions in biological systems with many componentsPhase Transitions in Biological Systems with Many Components
year cv 20172017
venue crossref Biophys. J.Biophysical JournalBiophysical Journal
kind cv articlearticle
DOI crossref 10.1016/j.bpj.2016.10.04310.1016/j.bpj.2016.10.043
first author openalex JacobsJacobs

Citations

OpenAlex
194
Scholar
none
DOI
10.1016/j.bpj.2016.10.043
OpenAlex
W2593868122

Match decisions

  • doi merged · 1.00 · Run 18
2016 Oligomers of heat-shock proteins: Structures that don’t imply function PLOS Computational Biology article journal CV OA GS

CV span

lines 207–208 · CV · published

207W.M. Jacobs, T.P.J. Knowles, and D. Frenkel, “Oligomers of heat-shock proteins: Structures that208don’t imply function,” PLoS Comp. Biol. 12, e1004756 (2016).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; T.P.J. Knowles; D. Frenkel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Oligomers of heat-shock proteins: Structures that don’t imply functionOligomers of Heat-Shock Proteins: Structures That Don’t Imply Function
year cv 20162016
venue crossref PLoS Comp. Biol.PLoS Computational BiologyPLOS Computational Biology
kind cv articlearticle
DOI crossref 10.1371/journal.pcbi.100475610.1371/journal.pcbi.1004756
first author openalex JacobsJacobs

Citations

OpenAlex
10
Scholar
none
DOI
10.1371/journal.pcbi.1004756
OpenAlex
W1958900882

Match decisions

  • doi merged · 1.00 · Run 18
2016 Self-assembly of structures with addressable complexity Journal of the American Chemical Society article journal CV OA GS

CV span

lines 204–205 · CV · published

204W.M. Jacobs and D. Frenkel, “Self-assembly of structures with addressable complexity,”205J. Am. Chem. Soc. 138, 2457–2467 (2016).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; D. Frenkel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Self-assembly of structures with addressable complexitySelf-Assembly of Structures with Addressable Complexity
year cv 20162016
venue crossref J. Am. Chem. Soc.Journal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticle
DOI crossref 10.1021/jacs.5b1191810.1021/jacs.5b11918
first author openalex JacobsJacobs

Citations

OpenAlex
104
Scholar
none
DOI
10.1021/jacs.5b11918
OpenAlex
W2281973666

Match decisions

  • gemini merged · 0.99 · Run 18 The CV record and OpenAlex record share the exact same DOI and title referring to the same journal article.
2016 Structure-based prediction of protein-folding transition paths Biophysical Journal article journal CV OA GS

CV span

lines 200–202 · CV · published

200W.M. Jacobs and E.I. Shakhnovich, “Structure-based prediction of protein-folding transition paths,”201Biophys. J. 111, 925–936 (2016).202†Selected by the editor for Biophys. J. News & Views.

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; E.I. Shakhnovich
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Structure-based prediction of protein-folding transition pathsStructure-Based Prediction of Protein-Folding Transition Paths
year cv 20162016
venue crossref Biophys. J.Biophysical JournalBiophysical Journal
kind cv articlearticle
DOI crossref 10.1016/j.bpj.2016.06.03110.1016/j.bpj.2016.06.031
first author openalex JacobsJacobs

Citations

OpenAlex
29
Scholar
none
DOI
10.1016/j.bpj.2016.06.031
OpenAlex
W2471690602

Match decisions

  • doi merged · 1.00 · Run 18
2015 Rational design of self-assembly pathways for complex multicomponent structures Proceedings of the National Academy of Sciences article journal CV OA GS

CV span

lines 213–214 · CV · published

213W.M. Jacobs, A. Reinhardt, and D. Frenkel, “Rational design of self-assembly pathways for complex214multicomponent structures,” Proc. Natl. Acad. Sci. U.S.A. 112, 6313–6318 (2015).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; A. Reinhardt; D. Frenkel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Rational design of self-assembly pathways for complex multicomponent structuresRational design of self-assembly pathways for complex multicomponent structures
year cv 20152015
venue crossref Proc. Natl. Acad. Sci. U.S.A.Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences
kind cv articlearticle
DOI crossref 10.1073/pnas.150221011210.1073/pnas.1502210112
first author openalex JacobsJacobs

Citations

OpenAlex
134
Scholar
none
DOI
10.1073/pnas.1502210112
OpenAlex
W1588463119

Match decisions

  • gemini merged · 0.99 · Run 18 Both records share the same PNAS DOI and title for rational design of self-assembly pathways.
2015 Self-assembly protocol design for periodic multicomponent structures Soft Matter article journal CV OA GS

CV span

lines 210–211 · CV · published

210W.M. Jacobs and D. Frenkel, “Self-assembly protocol design for periodic multicomponent211structures,” Soft Matter 11, 8930–8938 (2015).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; D. Frenkel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Self-assembly protocol design for periodic multicomponent structuresSelf-assembly protocol design for periodic multicomponent structures
year cv 20152015
venue crossref Soft MatterSoft Matter
kind cv articlearticle
DOI crossref 10.1039/c5sm01841b10.1039/c5sm01841b
first author openalex JacobsJacobs

Citations

OpenAlex
24
Scholar
none
DOI
10.1039/c5sm01841b
OpenAlex
W1921026364

Match decisions

  • gemini merged · 0.99 · Run 18 Both records share the same PNAS DOI and title for rational design of self-assembly pathways.
2015 Theoretical prediction of free-energy landscapes for complex self-assembly The Journal of Chemical Physics article journal CV OA GS

CV span

lines 216–217 · CV · published

216W.M. Jacobs, A. Reinhardt, and D. Frenkel, “Theoretical prediction of free-energy landscapes for217complex self-assembly,” J. Chem. Phys. 142, 021101 (2015).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; A. Reinhardt; D. Frenkel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Theoretical prediction of free-energy landscapes for complex self-assemblyCommunication: Theoretical prediction of free-energy landscapes for complex self-assembly
year cv 20152015
venue crossref J. Chem. Phys.The Journal of Chemical PhysicsThe Journal of Chemical Physics
kind cv articlearticle
DOI crossref 10.1063/1.490567010.1063/1.4905670
first author openalex JacobsJacobs

Citations

OpenAlex
44
Scholar
none
DOI
10.1063/1.4905670
OpenAlex
W2331021341

Match decisions

  • doi merged · 1.00 · Run 18
2014 Phase separation in solutions with specific and nonspecific interactions The Journal of Chemical Physics article journal CV OA GS

CV span

lines 219–221 · CV · published

219W.M. Jacobs, D.W. Oxtoby, and D. Frenkel, “Phase separation in solutions with specific and220nonspecific interactions,” J. Chem. Phys. 140, 204109 (2014).221†Selected as a JCP Editors’ Pick.

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; D.W. Oxtoby; D. Frenkel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Phase separation in solutions with specific and nonspecific interactionsPhase separation in solutions with specific and nonspecific interactions
year cv 20142014
venue crossref J. Chem. Phys.The Journal of Chemical PhysicsThe Journal of Chemical Physics
kind cv articlearticle
DOI crossref 10.1063/1.487883610.1063/1.4878836
first author openalex JacobsJacobs

Citations

OpenAlex
35
Scholar
none
DOI
10.1063/1.4878836
OpenAlex
W2048309498

Match decisions

  • doi merged · 1.00 · Run 18
2013 Predicting phase behavior in multicomponent mixtures The Journal of Chemical Physics article journal CV OA GS

CV span

lines 223–224 · CV · published

223W.M. Jacobs and D. Frenkel, “Predicting phase behavior in multicomponent mixtures,”224J. Chem. Phys. 139, 024108 (2013).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; D. Frenkel
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Predicting phase behavior in multicomponent mixturesPredicting phase behavior in multicomponent mixtures
year cv 20132013
venue crossref J. Chem. Phys.The Journal of Chemical PhysicsThe Journal of Chemical Physics
kind cv articlearticle
DOI crossref 10.1063/1.481246110.1063/1.4812461
first author openalex JacobsJacobs

Citations

OpenAlex
67
Scholar
none
DOI
10.1063/1.4812461
OpenAlex
W1977138840

Match decisions

  • doi merged · 1.00 · Run 18
2012 Acoustic energy dissipation and thermalization in carbon nanotubes: Atomistic modeling and mesoscopic description Physical Review B article CV OA GS

CV span

lines 225–227 · CV · published

225W.M. Jacobs, D.A. Nicholson, H. Zemer, A.N. Volkov, and L.V. Zhigilei, “Acoustic energy226dissipation and thermalization in carbon nanotubes: Atomistic modeling and mesoscopic227description,” Phys. Rev. B 86, 165414 (2012).

Institution fields

Peer reviewed
yes
First author
Jacobs
Co-authors
W.M. Jacobs; D.A. Nicholson; H. Zemer; A.N. Volkov; L.V. Zhigilei
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Acoustic energy dissipation and thermalization in carbon nanotubes: Atomistic modeling and mesoscopic descriptionAcoustic energy dissipation and thermalization in carbon nanotubes: Atomistic modeling and mesoscopic descriptionAcoustic energy dissipation and thermalization in carbon nanotubes: Atomistic modeling and mesoscopic description
year cv 201220122012
venue crossref Phys. Rev. BDSpace@MIT (Massachusetts Institute of Technology)Physical Review BPhysical Review B
kind cv articlearticlearticle
DOI crossref 10.1103/physrevb.86.16541410.1103/physrevb.86.165414
first author openalex JacobsNicholsonJacobs

Also recorded as

Citations

OpenAlex
0
Scholar
none
DOI
10.1103/physrevb.86.165414
OpenAlex
W1537578979

Match decisions

  • fingerprint merged · 1.00 · Run 18

In progress

3 items in progress, under review, forthcoming or a working paper · not counted as publications

2026 Polydisperse polymer fractionation between phases Physical Review E working paper journal CV OA GS

CV span

lines 238–240 · CV · under_review

238J.P. de Souza, W.M. Jacobs, and H.A. Stone, “Polydisperse polymer fractionation between phases,”239arXiv 2409.09229.240

Institution fields

Peer reviewed
none
First author
de Souza
Co-authors
J.P. de Souza; W.M. Jacobs; H.A. Stone
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Polydisperse polymer fractionation between phasesPolydisperse polymer fractionation between phasesPolydisperse polymer fractionation between phases
year crossref 202420262026
venue crossref arXiv 2409.09229arXiv (Cornell University)Physical review. EPhysical Review E
kind cv working_paperworking_paperarticle
DOI crossref 10.1103/rhyc-3wmw10.48550/arxiv.2409.0922910.1103/rhyc-3wmw
preprint DOI openalex 10.48550/arxiv.2409.09229
first author openalex Souzade Souzade Souza

Citations

OpenAlex
0
Scholar
none
DOI
10.1103/rhyc-3wmw
OpenAlex
W7165779947

Match decisions

  • doi merged · 1.00 · Run 18
2026 Roadmap for condensates in cell biology PRX Life working paper journal CV OA GS

CV span

lines 236–236 · CV · under_review

236D. Aierken, W.M. Jacobs, et al., “Roadmap for condensates in cell biology,” arXiv 2601.03677.

Institution fields

Peer reviewed
none
First author
Aierken
Co-authors
D. Aierken; W.M. Jacobs; et al.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Roadmap for condensates in cell biologyRoadmap for Condensates in Cell BiologyRoadmap for Condensates in Cell BiologyRoadmap for Condensates in Cell Biology
year crossref 2026202620262026
venue crossref arXiv 2601.03677MPG.PuRe (Max Planck Society)arXiv (Cornell University)PRX LifePRX Life
kind cv working_paperarticleworking_paperarticle
DOI crossref 10.1103/3b2k-ftwx10.48550/arxiv.2601.0367710.1103/3b2k-ftwx
preprint DOI openalex 10.48550/arxiv.2601.03677
first author openalex AierkenAierkenAierkenAnonymous

Also recorded as

  • W7119557722 · preprint · 2026 Roadmap for Condensates in Cell Biology

Citations

OpenAlex
1
Scholar
none
DOI
10.1103/3b2k-ftwx
OpenAlex
W7167918462

Match decisions

  • doi merged · 1.00 · Run 18
Self-assembly of finite-sized structures The Art of Molecular Programming chapter CV OA GS

CV span

lines 231–232 · CV · forthcoming

231W.M. Jacobs, “Self-assembly of finite-sized structures,” The Art of Molecular Programming232(forthcoming).

Institution fields

Peer reviewed
none
First author
Jacobs
Co-authors
none
Subfield
other
Method
none
Invited
yes
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Self-assembly of finite-sized structures
venue cv The Art of Molecular Programming
kind cv chapter
first author cv Jacobs

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

Positions

4 from the CV · current position answer

TitleOrganizationYearsRankSourceLines
Assistant Professor of Chemistry current Princeton University 2019– Assistant CV 6, 7
Associated Faculty, Department of Chemical and Biological Engineering current Unknown CV 6, 8
Associated Faculty, Princeton Materials Institute current Unknown CV 6, 9
Postdoctoral Fellow Department of Chemistry and Chemical Biology, Harvard University 2014–2019 Postdoc CV 20, 21
Assistant Professor of Chemistry Assistant CV current position 7

Entries needing review

0

Nothing to review.

Entries dropped by a reviewer

0

No dropped entries.