Academic

Megan Kizer

Chemistry · 0000-0003-3549-8606 · Brown University

Citations received by year

Google Scholar profile

Series: Citations received.0501001502002017 Citations received 18182018 Citations received 20202019 Citations received 65652020 Citations received 1311312021 Citations received 1691692022 Citations received 1941942023 Citations received 1971972024 Citations received 1671672025 Citations received 1711712026 Citations received 139139201720182020202220242026Citations receivedCalendar year
Series: Citations received.0501001502002017 Citations received 18182018 Citations received 20202019 Citations received 65652020 Citations received 1311312021 Citations received 1691692022 Citations received 1941942023 Citations received 1971972024 Citations received 1671672025 Citations received 1711712026 Citations received 13913920172020202220242026Citations receivedCalendar year

Citations received in each calendar year across this verified Scholar profile. Bars are annual counts; missing years are unknown. 2026 is an incomplete calendar year.

Publications

24 rows, 6 from the Scholar profile only

2024 Editors’ Choice—Perspective—Deciphering the Glycan Kryptos by Solid-State Nanopore Single-Molecule Sensing: A Call for Integrated Advancements Across Glyco- and Nanopore Science ECS Sensors Plus article journal CV OA GS Scholar only

CV span

Not in the CV.

Fields by source

FieldCVOpenAlexScholar
title openalex Editors’ Choice—Perspective—Deciphering the Glycan Kryptos by Solid-State Nanopore Single-Molecule Sensing: A Call for Integrated Advancements Across Glyco- and Nanopore ScienceEditors’ Choice—Perspective—Deciphering the Glycan Kryptos by Solid-State Nanopore Single-Molecule Sensing: A Call for Integrated Advancements Across Glyco-and Nanopore Science
year openalex 20242024
venue openalex ECS Sensors PlusECS Sensors Plus
kind openalex articleother
DOI openalex 10.1149/2754-2726/ad49b0
first author openalex KizerKizer

Citations

OpenAlex
6
Scholar
3
DOI
10.1149/2754-2726/ad49b0
OpenAlex
W4396828987

Match decisions

  • fingerprint merged · 1.00 · Run 18
2023 Engineered Glycan-Binding Proteins for Recognition of the Thomsen-Friedenreich Antigen and Structurally Related Disaccharides ACS Chemical Biology article journal CV OA GS

CV span

lines 73–75 · CV · published

7318. Ward, E.M., Zamora, C.Z., Schocker, N., Ghosh, S., Kizer, M.E. and Imperiali, B. Engineered Glycan-Binding74Proteins for Recognition of the Thomsen-Friedenreich Antigen and Structurally Related Disaccharides. ACS75Chemical Biology. 2023, 18 (1), 70-80. (Link)

Institution fields

Peer reviewed
yes
First author
Ward
Co-authors
Ward, E.M.; Zamora, C.Z.; Schocker, N.; Ghosh, S.; Kizer, M.E.; Imperiali, B.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Engineered Glycan-Binding Proteins for Recognition of the Thomsen-Friedenreich Antigen and Structurally Related DisaccharidesEngineered Glycan-Binding Proteins for Recognition of the Thomsen–Friedenreich Antigen and Structurally Related DisaccharidesEngineered Glycan-Binding Proteins for Recognition of the Thomsen–Friedenreich Antigen and Structurally Related Disaccharides
year cv 202320222023
venue crossref ACS Chemical BiologyACS Chemical BiologyACS chemical biology
kind cv articlearticleother
DOI crossref 10.1021/acschembio.2c0068310.1021/acschembio.2c00683
first author openalex WardWardWard

Citations

OpenAlex
11
Scholar
15
DOI
10.1021/acschembio.2c00683
OpenAlex
W4311824625

Match decisions

  • doi merged · 1.00 · Run 18
2022 Aptamers for viral detection and inhibition ACS Infectious Diseases article journal CV OA GS

CV span

lines 77–78 · CV · published

7717. Chakraborty, B., Das, S., Gupta, A., Xiong, Y., TV, V., Kizer, M., Duan, J., Chandresekaran, A.R., Wang, X.78Aptamers for viral detection and inhibition. ACS Infectious Disease. 2022, 18 (4), 667-692. (Link)

Institution fields

Peer reviewed
yes
First author
Chakraborty
Co-authors
Chakraborty, B.; Das, S.; Gupta, A.; Xiong, Y.; TV, V.; Kizer, M.; Duan, J.; Chandresekaran, A.R.; Wang, X.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Aptamers for viral detection and inhibitionAptamers for Viral Detection and InhibitionAptamers for viral detection and inhibition
year cv 202220222022
venue crossref ACS Infectious DiseaseACS Infectious DiseasesACS infectious diseasesACS Infectious Diseases
kind cv articlearticleother
DOI crossref 10.1021/acsinfecdis.1c0054610.1021/acsinfecdis.1c00546
first author openalex ChakrabortyChakrabortyChakraborty

Citations

OpenAlex
47
Scholar
62
DOI
10.1021/acsinfecdis.1c00546
OpenAlex
W4214743640

Match decisions

  • doi merged · 1.00 · Run 18
2021 Gap Mode Tip-Enhanced Raman and AFM Imaging of RNA Strands Conference on Lasers and Electro-Optics conference paper CV OA GS

CV span

lines 83–84 · CV · published

8315. He, Z., Qiu, W., Kizer, M.E., Wang, J., Sokolov, A. V., Wang, X., Hu, J., and Scully, M.O. Gap Mode Tip-Enhanced84Raman and AFM Imaging of RNA Strands. Conference on Lasers and Electro-Optics. 2021, AM1R.3. (Link)

Institution fields

Peer reviewed
yes
First author
He
Co-authors
He, Z.; Qiu, W.; Kizer, M.E.; Wang, J.; Sokolov, A. V.; Wang, X.; Hu, J.; Scully, M.O.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Gap Mode Tip-Enhanced Raman and AFM Imaging of RNA StrandsGap Mode Tip-Enhanced Raman and AFM Imaging of RNA StrandsGap Mode Tip-Enhanced Raman and AFM Imaging of RNA Strands
year cv 202120212021
venue crossref Conference on Lasers and Electro-OpticsConference on Lasers and Electro-OpticsCLEO: Applications and Technology, AM1R.
kind cv conference_paperotherother
DOI crossref 10.1364/cleo_at.2021.am1r.310.1364/cleo_at.2021.am1r.3
first author openalex HeHeHe

Citations

OpenAlex
0
Scholar
none
DOI
10.1364/cleo_at.2021.am1r.3
OpenAlex
W3195498212

Match decisions

  • doi merged · 1.00 · Run 18
2021 Resolving the Sequence of RNA Strands by Tip-Enhanced Raman Spectroscopy ACS Photonics article journal CV OA GS

CV span

lines 86–87 · CV · published

8614. He, Z., Qiu, W., Kizer, M.E., Wang, J., Chen, W., Sokolov, A., Wang, X., Hu, J., and Scully, M. O. Resolving the87Sequence of RNA Strands by Tip-Enhanced Raman Spectroscopy. ACS Photonics. 2021, 8 (2), 424-430. (Link)

Institution fields

Peer reviewed
yes
First author
He
Co-authors
He, Z.; Qiu, W.; Kizer, M.E.; Wang, J.; Chen, W.; Sokolov, A.; Wang, X.; Hu, J.; Scully, M. O.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Resolving the Sequence of RNA Strands by Tip-Enhanced Raman SpectroscopyResolving the Sequence of RNA Strands by Tip-Enhanced Raman SpectroscopyResolving the sequence of RNA strands by tip-enhanced Raman spectroscopy
year cv 202120202021
venue crossref ACS PhotonicsACS PhotonicsACS Photonics
kind cv articlearticleother
DOI crossref 10.1021/acsphotonics.0c0148610.1021/acsphotonics.0c01486
first author openalex HeHeHe

Citations

OpenAlex
30
Scholar
44
DOI
10.1021/acsphotonics.0c01486
OpenAlex
W3113085590

Match decisions

  • doi merged · 1.00 · Run 18
2021 Strategies and Tactics for the Development of Selective Glycan-Binding Proteins ACS Chemical Biology article journal CV OA GS

CV span

lines 80–81 · CV · published

8016. Ward, E. M., Kizer, M.E., and Imperiali, B. Strategies and Tactics for the Development of Selective Glycan-81Binding Proteins. ACS Chemical Biology. 2021, 16 (10), 1795-1813. (Link)

Institution fields

Peer reviewed
yes
First author
Ward
Co-authors
Ward, E. M.; Kizer, M.E.; Imperiali, B.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Strategies and Tactics for the Development of Selective Glycan-Binding ProteinsStrategies and Tactics for the Development of Selective Glycan-Binding ProteinsStrategies and tactics for the development of selective glycan-binding proteins
year cv 202120212021
venue crossref ACS Chemical BiologyACS Chemical BiologyACS chemical biology
kind cv articlearticleother
DOI crossref 10.1021/acschembio.0c0088010.1021/acschembio.0c00880
first author openalex WardWardWard

Citations

OpenAlex
43
Scholar
52
DOI
10.1021/acschembio.0c00880
OpenAlex
W3124118836

Match decisions

  • doi merged · 1.00 · Run 18
2020 Biotechnological and therapeutic applications of natural nucleic acid structural motifs Topics in Current Chemistry article journal CV OA GS

CV span

lines 89–90 · CV · published

8913. Duan, J.*, Wang, X., and Kizer, M.E.* Biotechnological and therapeutic applications of natural nucleic acid90structural motifs. Topics in Current Chemistry. 2020, 378, 26. (Link)

Institution fields

Peer reviewed
yes
First author
Duan
Co-authors
Duan, J.; Wang, X.; Kizer, M.E.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Biotechnological and therapeutic applications of natural nucleic acid structural motifsBiotechnological and Therapeutic Applications of Natural Nucleic Acid Structural MotifsBiotechnological and Therapeutic Applications of Natural Nucleic Acid Structural MotifsBiotechnological and therapeutic applications of natural nucleic acid structural motifs
year cv 2020202020202020
venue crossref Topics in Current ChemistryTopics in Current ChemistryTopics in current chemistry collectionsTopics in Current Chemistry
kind cv articlearticlechapterother
DOI crossref 10.1007/s41061-020-0290-z10.1007/s41061-020-0290-z10.1007/978-3-030-54806-3_8
first author openalex DuanDuanDuanDuan

Also recorded as

Citations

OpenAlex
7
Scholar
13
DOI
10.1007/s41061-020-0290-z
OpenAlex
W3008214842

Match decisions

  • gemini merged · 0.95 · Run 18 These records share the same title, authors, year, and DOI for the journal article.
2020 Designer DNA architecture offers precise and multivalent spatial pattern-recognition for viral sensing and inhibition Nature Chemistry article journal CV OA GS

CV span

lines 92–97 · CV · published

9212. Kwon, P.S.◊, Ren, S.◊, S-J. Kwon, S-J.◊, Kizer, M.E.◊, Kuo, L.◊, Zhou, F., Zhang, F., Kim, D., Fraser, K., Kramer, L.D.,93Seeman, N.C, Dordick, J.S., Linhardt, R.J., Chao, J. and Wang, X. Designer DNA architecture offers precise and94multivalent spatial pattern-recognition for viral sensing and inhibition. Nature Chemistry. 2020, 12, 26-35.95(Link)96Nature Biotechnology Press Article97Nature Materials Editorial

Institution fields

Peer reviewed
yes
First author
Kwon
Co-authors
Kwon, P.S.; Ren, S.; S-J. Kwon, S-J.; Kizer, M.E.; Kuo, L.; Zhou, F.; Zhang, F.; Kim, D.; Fraser, K.; Kramer, L.D.; Seeman, N.C; Dordick, J.S.; Linhardt, R.J.; Chao, J.; Wang, X.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Designer DNA architecture offers precise and multivalent spatial pattern-recognition for viral sensing and inhibitionDesigner DNA architecture offers precise and multivalent spatial pattern-recognition for viral sensing and inhibitionDesigner DNA architecture offers precise and multivalent spatial pattern-recognition for viral sensing and inhibitionDesigner DNA architecture offers precise and multivalent spatial pattern-recognition for viral sensing and inhibition
year cv 2020201920192020
venue crossref Nature ChemistrybioRxiv (Cold Spring Harbor Laboratory)Nature ChemistryNature chemistry
kind cv articleworking_paperarticleother
DOI crossref 10.1038/s41557-019-0369-810.1101/60838010.1038/s41557-019-0369-8
preprint DOI openalex 10.1101/608380
first author openalex KwonKwonKwonKwon

Citations

OpenAlex
318
Scholar
333
OpenAlex with related records
331
DOI
10.1038/s41557-019-0369-8
OpenAlex
W2989653485

Match decisions

  • doi merged · 1.00 · Run 18
2019 A Molecular Hero Suit for In Vitro and In Vivo DNA Nanostructures Small article journal CV OA GS Scholar only

CV span

Not in the CV.

Fields by source

FieldCVOpenAlexScholar
title openalex A Molecular Hero Suit for In Vitro and In Vivo DNA NanostructuresA molecular hero suit for in vitro and in vivo DNA nanostructures
year openalex 20192019
venue openalex SmallSmall
kind openalex articleother
DOI openalex 10.1002/smll.201805386
first author openalex KizerKizer

Citations

OpenAlex
28
Scholar
29
DOI
10.1002/smll.201805386
OpenAlex
W2937846108

Match decisions

  • gemini merged · 0.95 · Run 18 These records refer to the same main research article with matching titles and authors.
2019 Click and photo-release dual-functional nucleic acid nanostructures Chemical Communications supplement 2019 Correction: Click and photo-release dual-functional nucleic acid nanostructures article journal CV OA GS Scholar only

CV span

Not in the CV.

Fields by source

FieldCVOpenAlexScholar
title openalex Click and photo-release dual-functional nucleic acid nanostructuresClick and photo-release dual-functional nucleic acid nanostructures
year openalex 20192019
venue openalex Chemical CommunicationsChemical Communications
kind openalex articleother
DOI openalex 10.1039/c9cc03806j
first author openalex ValsangkarValsangkar

Citations

OpenAlex
16
Scholar
17
DOI
10.1039/c9cc03806j
OpenAlex
W2966587747

Match decisions

  • gemini merged · 1.00 · Run 18 These records share the exact same title, year, journal, and DOI.
2019 Glycoconjugate synthesis using chemoselective ligation Organic & Biomolecular Chemistry article journal CV OA GS

CV span

lines 115–117 · CV · published

1157. Cheng, A., Zhang, X., Kizer, M., Wang, R., Middleton, D., Li, M., Wang, X., Li, X., Avci, F.Y., Zhang, F., and116Linhardt, R.J. Glycoconjugate synthesis using chemoselective ligation. Organic & Biomolecular Chemistry.1172019, 17, 2646-2650. (Link)

Institution fields

Peer reviewed
yes
First author
Cheng
Co-authors
Cheng, A.; Zhang, X.; Kizer, M.; Wang, R.; Middleton, D.; Li, M.; Wang, X.; Li, X.; Avci, F.Y.; Zhang, F.; Linhardt, R.J.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholarCrossRef
title cv Glycoconjugate synthesis using chemoselective ligationGlycoconjugate synthesis using chemoselective ligationGlycoconjugate synthesis using chemoselective ligation
year cv 201920192019
venue crossref Organic & Biomolecular ChemistryOrganic & Biomolecular ChemistryOrganic & biomolecular chemistryOrganic & Biomolecular Chemistry
kind cv articlearticleother
DOI crossref 10.1039/c9ob00270g10.1039/c9ob00270g
first author openalex ChengChengCheng

Citations

OpenAlex
19
Scholar
17
DOI
10.1039/c9ob00270g
OpenAlex
W2914411430

Match decisions

  • doi merged · 1.00 · Run 18
2019 Hydroporator: A hydrodynamic cell membrane perforator for the high-throughput vector-free intracellular delivery of nanomaterials and an evaluation of DNA nanostructure biostability in living cells Lab on a Chip article journal CV OA GS

CV span

lines 106–109 · CV · published

1069. Kizer, M.E.◊, Deng, Y.◊, Kang, G-Y., Mikael, P.E., Zhu, K., Wang, X., Chung, A.J. Hydroporator: A hydrodynamic107cell membrane perforator for the high-throughput vector-free intracellular delivery of nanomaterials and an108109evaluation of DNA nanostructure biostability in living cells. Lab on a Chip. 2019, 19, 1747-1754. (Link)

Institution fields

Peer reviewed
yes
First author
Kizer
Co-authors
Kizer, M.E.; Deng, Y.; Kang, G-Y.; Mikael, P.E.; Zhu, K.; Wang, X.; Chung, A.J.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Hydroporator: A hydrodynamic cell membrane perforator for the high-throughput vector-free intracellular delivery of nanomaterials and an evaluation of DNA nanostructure biostability in living cellsHydroporator: a hydrodynamic cell membrane perforator for high-throughput vector-free nanomaterial intracellular delivery and DNA origami biostability evaluationHydroporator: a hydrodynamic cell membrane perforator for high-throughput vector-free nanomaterial intracellular delivery and DNA origami biostability evaluation
year cv 201920192019
venue crossref Lab on a ChipLab on a ChipLab on a Chip
kind cv articlearticleother
DOI crossref 10.1039/c9lc00041k10.1039/c9lc00041k
first author openalex KizerKizerKizer

Citations

OpenAlex
83
Scholar
103
DOI
10.1039/c9lc00041k
OpenAlex
W2937172014

Match decisions

  • doi merged · 1.00 · Run 18
2019 Nucleic Acid Nanostructures and Biosensors in Biotechnological Applications PhDT article CV OA GS Scholar only

CV span

Not in the CV.

Fields by source

FieldCVOpenAlexScholar
title openalex Nucleic Acid Nanostructures and Biosensors in Biotechnological ApplicationsNucleic acid nanostructures and biosensors in biotechnological applications
year openalex 20192019
venue openalex PhDTRensselaer Polytechnic Institute
kind openalex articleother
first author openalex KizerKizer

Citations

OpenAlex
0
Scholar
none
OpenAlex
W3024885116

Match decisions

  • fingerprint merged · 1.00 · Run 18
2019 Paranemic Crossover DNA: There and Back Again Chemical Reviews article journal CV OA GS

CV span

lines 99–101 · CV · published

9911. Wang, X., Chandrasekaran, A.R., Shen, Z., Ohayon, Y., Wang, T., Kizer, M., Sha, R., Mao, C., Zhang, X., Liao, S.,100Ding, B., Chakraborty, B., Niu, D., Gu, H., Chao, J., Gao, X., Tangmatitham, T.C., and Seeman, N.C. Paranemic101Crossover DNA: There and Back Again. Chemical Reviews. 2019, 119 (10), 6273-6289. (Link)

Institution fields

Peer reviewed
yes
First author
Wang
Co-authors
Wang, X.; Chandrasekaran, A.R.; Shen, Z.; Ohayon, Y.; Wang, T.; Kizer, M.; Sha, R.; Mao, C.; Zhang, X.; Liao, S.; Ding, B.; Chakraborty, B.; Niu, D.; Gu, H.; Chao, J.; Gao, X.; Tangmatitham, T.C.; Seeman, N.C.
Subfield
other
Method
review
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Paranemic Crossover DNA: There and Back AgainParanemic Crossover DNA: There and Back AgainParanemic crossover DNA: there and back again
year cv 201920182019
venue crossref Chemical ReviewsChemical ReviewsChemical reviews
kind cv articlereviewother
DOI crossref 10.1021/acs.chemrev.8b0020710.1021/acs.chemrev.8b00207
first author openalex WangWangWang

Citations

OpenAlex
98
Scholar
107
DOI
10.1021/acs.chemrev.8b00207
OpenAlex
W2808713850

Match decisions

  • doi merged · 1.00 · Run 18
2019 The complex between a multi-junction DNA motif, PX-DNA, and T7 endonuclease I Biochemistry article journal CV OA GS

CV span

lines 111–113 · CV · published

1118. Kizer, M., Jing, T.J., Huntress, I.D., Walcott, B.D., Bromley, J.P., Fraser, K., Bystroff, C., and Wang, X. The112complex between a multi-junction DNA motif, PX-DNA, and T7 endonuclease I. Biochemistry. 2019, 58 (10),1131332-1342. (Link)

Institution fields

Peer reviewed
yes
First author
Kizer
Co-authors
Kizer, M.; Jing, T.J.; Huntress, I.D.; Walcott, B.D.; Bromley, J.P.; Fraser, K.; Bystroff, C.; Wang, X.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The complex between a multi-junction DNA motif, PX-DNA, and T7 endonuclease IComplex between a Multicrossover DNA Nanostructure, PX-DNA, and T7 Endonuclease IComplex between a multicrossover DNA nanostructure, PX-DNA, and T7 endonuclease I
year cv 201920192019
venue openalex BiochemistryBiochemistryBiochemistry
kind cv articlearticleother
DOI openalex 10.1021/acs.biochem.9b00057
first author openalex KizerKizerKizer

Citations

OpenAlex
8
Scholar
8
DOI
10.1021/acs.biochem.9b00057
OpenAlex
W2916000067

Match decisions

  • gemini merged · 1.00 · Run 18 All records share the same title, publication year, journal, and DOI.
2019 The Iron Man suit for in vitro and in vivo DNA Nanostructures Small article journal CV OA GS

CV span

lines 103–104 · CV · published

10310. Kizer, M.E.*, Linhardt, R. J., Chandrasekaran, A. R., and Wang, X. The Iron Man suit for in vitro and in vivo DNA104Nanostructures. Small. 2019, 15, 1805386. (Link)

Institution fields

Peer reviewed
yes
First author
Kizer
Co-authors
Kizer, M.E.; Linhardt, R. J.; Chandrasekaran, A. R.; Wang, X.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv The Iron Man suit for in vitro and in vivo DNA NanostructuresDNA Nanostructures: A Molecular Hero Suit for In Vitro and In Vivo DNA Nanostructures (Small 26/2019)DNA Nanostructures: A Molecular Hero Suit for In Vitro and In Vivo DNA Nanostructures (Small 26/2019)
year cv 201920192019
venue crossref SmallSmallSmall
kind cv articlearticleother
DOI crossref 10.1002/smll.20197014110.1002/smll.201970141
first author openalex KizerKizerKizer

Citations

OpenAlex
1
Scholar
1
DOI
10.1002/smll.201970141
OpenAlex
W2966682695

Match decisions

  • gemini merged · 0.95 · Run 18 These records refer to the same main research article with matching titles and authors.
2019 Tip-Enhanced Raman Imaging of Single-Stranded DNA with Single Base Resolution Journal of the American Chemical Society article journal CV OA GS

CV span

lines 119–121 · CV · published

1196. Zhe, H., Zehua, H., Kizer, M., Linhardt, R. J., Wang, X., Sinyukov, A. M., Wang, J., Deckert, V., Sokolov, A. V., Hu,120J., and Scully, M. O. Tip-Enhanced Raman Imaging of Single-Stranded DNA with Single Base Resolution.121Journal of the American Chemical Society. 2019, 141 (2), 753-757. (Link)

Institution fields

Peer reviewed
yes
First author
Zhe
Co-authors
Zhe, H.; Zehua, H.; Kizer, M.; Linhardt, R. J.; Wang, X.; Sinyukov, A. M.; Wang, J.; Deckert, V.; Sokolov, A. V.; Hu, J.; Scully, M. O.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Tip-Enhanced Raman Imaging of Single-Stranded DNA with Single Base ResolutionTip-Enhanced Raman Imaging of Single-Stranded DNA with Single Base ResolutionTip-enhanced Raman imaging of single-stranded DNA with single base resolution
year cv 201920182019
venue crossref Journal of the American Chemical SocietyJournal of the American Chemical SocietyJournal of the American Chemical Society
kind cv articlearticleother
DOI crossref 10.1021/jacs.8b1150610.1021/jacs.8b11506
first author openalex ZheHeHe

Citations

OpenAlex
142
Scholar
170
DOI
10.1021/jacs.8b11506
OpenAlex
W2908051142

Match decisions

  • doi merged · 1.00 · Run 18
2018 A quantitative model for BicD2/cargo interactions Biochemistry article journal CV OA GS

CV span

lines 123–124 · CV · published

1235. Noell, C. R., Loftus, K. M., Heying, C., Grewer, C., Kizer, M., Debler, E., and Solmaz, S. A quantitative model for124BicD2/cargo interactions. Biochemistry. 2018. 57 (46), 6538-6550. (Link)

Institution fields

Peer reviewed
yes
First author
Noell
Co-authors
Noell, C. R.; Loftus, K. M.; Heying, C.; Grewer, C.; Kizer, M.; Debler, E.; Solmaz, S.
Subfield
other
Method
quantitative
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv A quantitative model for BicD2/cargo interactionsA Quantitative Model for BicD2/Cargo InteractionsA quantitative model for BicD2/cargo interactions
year cv 201820182018
venue crossref BiochemistryBiochemistryBiochemistry
kind cv articlearticleother
DOI crossref 10.1021/acs.biochem.8b0098710.1021/acs.biochem.8b00987
first author openalex NoellNoellNoell

Citations

OpenAlex
19
Scholar
25
DOI
10.1021/acs.biochem.8b00987
OpenAlex
W2896583358

Match decisions

  • doi merged · 1.00 · Run 18
2018 Hydrodynamic stretching of single cells for high-throughput vector-free intracellular delivery of macromolecules 22nd International Conference on Miniaturized Systems for Chemistry and Life article CV OA GS Scholar only

CV span

Not in the CV.

Fields by source

FieldCVOpenAlexScholar
title openalex Hydrodynamic stretching of single cells for high-throughput vector-free intracellular delivery of macromoleculesHydrodynamic stretching of single cells for high-throughput vector-free intracellular delivery of macromolecules
year openalex 20182018
venue scholar 22nd International Conference on Miniaturized Systems for Chemistry and Life …
kind openalex articleother
first author openalex DengDeng

Citations

OpenAlex
0
Scholar
none
OpenAlex
W3070513796

Match decisions

  • fingerprint merged · 1.00 · Run 18
2018 Intracellular Delivery of Nanomaterials via an Inertial Microfluidic Cell Hydroporator Nano Letters article journal CV OA GS

CV span

lines 129–130 · CV · published

1293. Deng, Y., Kizer, M., Rada, M., Sage, J., Wang, X., Cheon, D.J., and Chung, A. J. Intracellular Delivery of130Nanomaterials via an Inertial Microfluidic Cell Hydroporator. Nano Letters. 2018, 18 (4), 2705-2710. (Link)

Institution fields

Peer reviewed
yes
First author
Deng
Co-authors
Deng, Y.; Kizer, M.; Rada, M.; Sage, J.; Wang, X.; Cheon, D.J.; Chung, A. J.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Intracellular Delivery of Nanomaterials via an Inertial Microfluidic Cell HydroporatorIntracellular Delivery of Nanomaterials via an Inertial Microfluidic Cell HydroporatorIntracellular delivery of nanomaterials via an inertial microfluidic cell hydroporator
year cv 201820182018
venue crossref Nano LettersNano LettersNano letters
kind cv articlearticleother
DOI crossref 10.1021/acs.nanolett.8b0070410.1021/acs.nanolett.8b00704
first author openalex DengDengDeng

Citations

OpenAlex
96
Scholar
120
DOI
10.1021/acs.nanolett.8b00704
OpenAlex
W2792136736

Match decisions

  • doi merged · 1.00 · Run 18
2018 RNA aptamers with specificity for heparosan and chondroitin glycosaminoglycans ACS Omega article journal CV OA GS

CV span

lines 126–127 · CV · published

1264. Kizer, M., Li, P., Cress, B.F., Lin, L., Jing, T.J., Zhang, X., Xia, K., Linhardt, R.J., and Wang, X. RNA aptamers with127specificity for heparosan and chondroitin glycosaminoglycans. ACS Omega. 2018. 3 (10), 13667-13675. (Link)

Institution fields

Peer reviewed
yes
First author
Kizer
Co-authors
Kizer, M.; Li, P.; Cress, B.F.; Lin, L.; Jing, T.J.; Zhang, X.; Xia, K.; Linhardt, R.J.; Wang, X.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv RNA aptamers with specificity for heparosan and chondroitin glycosaminoglycansRNA Aptamers with Specificity for Heparosan and Chondroitin GlycosaminoglycansRNA aptamers with specificity for heparosan and chondroitin glycosaminoglycans
year cv 201820182018
venue crossref ACS OmegaACS OmegaACS omega
kind cv articlearticleother
DOI crossref 10.1021/acsomega.8b0185310.1021/acsomega.8b01853
first author openalex KizerKizerKizer

Citations

OpenAlex
9
Scholar
11
DOI
10.1021/acsomega.8b01853
OpenAlex
W2897745938

Match decisions

  • doi merged · 1.00 · Run 18
2017 Computational Modeling of the Interface between a Multi-junction DNA Motif and T7 Endonuclease I PROTEIN SCIENCE article journal CV OA GS Scholar only

CV span

Not in the CV.

Fields by source

FieldCVOpenAlexScholar
title scholar Computational Modeling of the Interface between a Multi-junction DNA Motif and T7 Endonuclease I
year scholar 2017
venue scholar PROTEIN SCIENCE
kind scholar other
first author scholar Walcott

Citations

OpenAlex
none
Scholar
none

Match decisions

No decision recorded; a single record.

2017 Shear Dependent LC Purification of an Engineered DNA Nanoswitch and Implications for DNA Origami Analytical Chemistry article journal CV OA GS

CV span

lines 132–134 · CV · published

1322. Halvorsen, K., Kizer, M.E., Wang, X. Chandrasekaran, A.R., Basanta-Sanchez, M. Shear Dependent LC133Purification of an Engineered DNA Nanoswitch and Implications for DNA Origami. Analytical Chemistry. 2017,13489 (11), 5673-5677. (Link)

Institution fields

Peer reviewed
yes
First author
Halvorsen
Co-authors
Halvorsen, K.; Kizer, M.E.; Wang, X.; Chandrasekaran, A.R.; Basanta-Sanchez, M.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Shear Dependent LC Purification of an Engineered DNA Nanoswitch and Implications for DNA OrigamiShear Dependent LC Purification of an Engineered DNA Nanoswitch and Implications for DNA OrigamiShear dependent LC purification of an engineered DNA nanoswitch and implications for DNA origami
year cv 201720172017
venue crossref Analytical ChemistryAnalytical ChemistryAnalytical chemistry
kind cv articlearticleother
DOI crossref 10.1021/acs.analchem.7b0079110.1021/acs.analchem.7b00791
first author openalex HalvorsenHalvorsenHalvorsen

Citations

OpenAlex
27
Scholar
28
DOI
10.1021/acs.analchem.7b00791
OpenAlex
W2611629280

Match decisions

  • doi merged · 1.00 · Run 18
2016 Beyond the fold: Emerging Biological Applications of DNA Origami ChemBioChem article journal CV OA GS

CV span

lines 136–137 · CV · published

1361. Chandrasekaran, A.R., Anderson, N., Kizer, M., Halvorsen, K. and Wang, X. Beyond the fold: Emerging137Biological Applications of DNA Origami. ChemBioChem. 2016, 17, 1081-1089. (Link)

Institution fields

Peer reviewed
yes
First author
Chandrasekaran
Co-authors
Chandrasekaran, A.R.; Anderson, N.; Kizer, M.; Halvorsen, K.; Wang, X.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none

Fields by source

FieldCVOpenAlexScholar
title cv Beyond the fold: Emerging Biological Applications of DNA OrigamiBeyond the Fold: Emerging Biological Applications of DNA OrigamiBeyond the fold: emerging biological applications of DNA origami
year cv 201620162016
venue crossref ChemBioChemChemBioChemChemBioChem
kind cv articlearticleother
DOI crossref 10.1002/cbic.20160003810.1002/cbic.201600038
first author openalex ChandrasekaranChandrasekaranChandrasekaran

Citations

OpenAlex
101
Scholar
120
DOI
10.1002/cbic.201600038
OpenAlex
W2291928603

Match decisions

  • doi merged · 1.00 · Run 18

Not counted

1 item · dissertations, talks, media, datasets · listed, not counted as publications

2020 Inertial microfluidic cell hydroporator (IMCH) for high-throughput & single-step intracellular molecule delivery 21st International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2017 presentation not counted CV OA GS Scholar only

CV span

Not in the CV.

Fields by source

FieldCVOpenAlexScholar
title openalex Inertial microfluidic cell hydroporator (IMCH) for high-throughput & single-step intracellular molecule deliveryInertial microfluidic cell hydroporator (IMCH) for high-throughput & single-step intracellular molecule delivery
year openalex 20202020
venue openalex 21st International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 201721st International Conference on Miniaturized Systems for Chemistry and Life …
kind scholar otherother
first author openalex DengDeng

Citations

OpenAlex
0
Scholar
none
OpenAlex
W3021903413

Match decisions

  • fingerprint merged · 1.00 · Run 18

Positions

6 from the CV · current position answer · Scholar affiliation

TitleOrganizationYearsRankSourceLines
Assistant Professor of Chemistry current Brown University Assistant CV 1, 2
Assistant Professor of Chemistry current Brown University 2023– Assistant CV 16, 17, 18
Postdoctoral Training Massachusetts Institute of Technology 2019–2022 Postdoc CV 16, 20, 21
NIH Ruth L. Kirschtein Postdoctoral Fellow Dr. Barbara Imperiali Lab, MIT – Cambridge, MA 2019–2022 Postdoc CV 33, 34, 35
Slezak Fellow Dr. Xing Wang and Dr. Robert Linhardt Labs, RPI – Troy, NY 2015–2019 Postdoc CV 33, 43, 44
Starzak Fellow, Undergraduate Research Assistant Dr. Sozanne Solmaz Lab, Binghamton University – Binghamton, NY 2014–2015 Postdoc CV 33, 63, 64
Assistant Professor of Chemistry Assistant CV current position 2, 17, 18
Brown University Unknown Scholar

Entries needing review

0

Nothing to review.

Entries dropped by a reviewer

0

No dropped entries.