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2020 Additive-Free Formic Acid Dehydrogenation Using a Pincer-Supported Iron Catalyst. Nilay Hazari · ChemCatChem 46 2020 Differences in the Performance of Allyl Based Palladium Precatalysts for Suzuki-Miyaura Reactions. Nilay Hazari · Advanced Synthesis & Catalysis 30 2020 Ni(I)-Alkyl Complexes Bearing Phenanthroline Ligands: Experimental Evidence for CO2 Insertion at Ni(I) Centers. Nilay Hazari · Journal of the American Chemical Society 102 2020 Organometallic Chemistry for Enabling Carbon Dioxide Utilization. Nilay Hazari · Organometallics 15 2020 Rational Design of Co-Catalysts for the Deaminative Hydrogenation of Amides. Nilay Hazari · Chemical Science 24 2020 Synthesis of Organometallic Pincer-Supported Cobalt(II) Complexes. Nilay Hazari · Polyhedron 3 2020 Thermodynamic and Kinetic Hydricity of Transition Metal Hydrides. Nilay Hazari · Chemical Society Reviews 114 2019 Bis(dialkylphosphino)ferrocene-Ligated Nickel(II) Precatalysts for Suzuki-Miyaura Reactions of Aryl Carbonates. Nilay Hazari · Organometallics 31 2019 Controlling Selectivity in the Hydroboration of Carbon Dioxide to the Formic Acid, Formaldehyde, and Methanol Oxidation Levels. Nilay Hazari · ACS Catalysis 98 2019 Cross-Coupling and Related Reactions: Connecting Past Success to the Development of New Reactions for the Future. Nilay Hazari · Organometallics 517 2019 Development of an Improved System for the Carboxylation of Aryl Halides through Mechanistic Studies. Nilay Hazari · ACS Catalysis 113 2019 Opportunities and Challenges for Catalysis in Carbon Dioxide Utilization. Nilay Hazari · ACS Catalysis 473 2019 Palladium-Catalyzed Suzuki-Miyaura Reactions of Aspartic Acid Derived Phenyl Esters. Nilay Hazari · Organic Letters 15 2019 Sequential Hydrogenation of CO2 to Methanol Using a Pincer Iron Catalyst. Nilay Hazari · Organometallics 84 2019 Synthesis and Reactivity of Paramagnetic Ni Polypyridyl Complexes Relevant to Csp2-Csp3 Coupling Reactions. Nilay Hazari · Angewandte Chemie International Edition · needs review 120 2019 The Role of Proton Shuttles in the Reversible Activation of Hydrogen via Metal-Ligand Cooperation. Nilay Hazari · Journal of the American Chemical Society 68 2019 Understanding the Individual and Combined Effects of Solvent and Lewis Acid on CO2 Insertion into a Metal Hydride. Nilay Hazari · Journal of the American Chemical Society 62 2018 Acceleration of CO2 Insertion into Metal Hydrides: Ligand, Lewis Acid, and Solvent Effects on Reaction Kinetics. Nilay Hazari · Chemical Science 95 2018 A Highly Efficient Polymer Non-Fullerene Organic Solar Cell Enhanced by Introducing a Small Molecule as a Crystallizing-Agent. Nilay Hazari · Materials Today 60 2018 A Rapidly Activating Pd-Precatalyst for Suzuki-Miyaura and Buchwald-Hartwig Couplings of Aryl Esters. Nilay Hazari · The Journal of Organic Chemistry 101 2018 Catalytic Formic Acid Dehydrogenation and CO2 Hydrogenation Using Iron PNRP Pincer Complexes with Isonitrile Ligands. Nilay Hazari · Organometallics 76 2018 Cross-Coupling Reaction Catalysts, and Methods of Making and Using Same. Nilay Hazari · PCT Int. Appl. 2018 Effect of Nucleophilicity on the Kinetics of CO2 Insertion into Pincer-Supported Nickel Complexes Nilay Hazari · Organometallics 19 2018 Hydrogenation and Dehydrogenation Reactions Catalyzed by Iron Pincer Compounds Nilay Hazari · Pincer Compounds 13 2018 Iron-Catalyzed Urea Synthesis: Dehydrogenative Coupling of Methanol and Amines. Nilay Hazari · Chemical Science 61 2018 Modifications to the Aryl Group of dppf-Ligated Ni σ-Aryl Precatalysts: Impact on Speciation and Catalytic Activity in Suzuki-Miyaura Coupling Reactions. Nilay Hazari · Organometallics 37 2018 Nickel(I) Aryl Species: Synthesis, Properties, and Catalytic Activity. Nilay Hazari · ACS Catalysis 81 2018 Selective Iron-Catalyzed N-Formylation of Amines using Dihydrogen and Carbon Dioxide. Nilay Hazari · ACS Catalysis 131 2018 The Key Role of the Hemiaminal Intermediate in the Iron-Catalyzed Deaminative Hydrogenation of Amides. Nilay Hazari · ACS Catalysis 67 2017 Carbon Dioxide Insertion into Group 9 and 10 Metal-Element -Bonds. Nilay Hazari · Inorganic Chemistry 97 2017 Colorful Polymer Solar Cells Employing an Energy Transfer Dye Molecule. Nilay Hazari · Nano Energy 44 2017 DFT Investigation of Suzuki-Miyaura Reactions with Aryl Sulfamates Using a Dialkylbiaryl Phosphine-Ligated Palladium Catalyst. Nilay Hazari · Organometallics 32 2017 Iron-Catalyzed Amide Formation from the Dehydrogenative Coupling of Alcohols and Secondary Amines. Nilay Hazari · Organometallics 73 2017 Mechanistic Study of an Improved Ni Precatalyst for Suzuki-Miyaura Reactions of Aryl Sulfamates: Understanding the Role of Ni(I) Species. Nilay Hazari · Journal of the American Chemical Society 197 2017 Reversible Hydrogenation of Carbon Dioxide to Formic Acid and Methanol: Lewis Acid Enhancement of Base Metal Catalysts. Nilay Hazari · Accounts of Chemical Research 256 2017 Selective Iron-Catalyzed Deaminative Hydrogenation of Amides. Nilay Hazari · Organometallics 97 2017 Synthesis and Catalytic Activity of PNP Supported Iron Complexes with Ancillary Isonitrile Ligands. Nilay Hazari · Organometallics 38 2017 Well-Defined Nickel and Palladium Precatalysts for Cross-Coupling. Nilay Hazari · Nature Reviews Chemistry 483 2016 Dinitrogen Facilitated Reversible Formation of a Si–H Bond in a Pincer Supported Ni Complex. Nilay Hazari · Organometallics 40 2016 Dinuclear PdI Complexes with Bridging Allyl and Related Ligands Nilay Hazari · Chemical Society Reviews 49 2016 Novel Precatalyst Scaffold for Cross-Coupling Reactions, and Methods of Making and Using Same. Nilay Hazari · PCT Int. Appl. 2016 Pd-Catalyzed Suzuki-Miyaura and Hiyama-Denmark Couplings of Aryl Sulfamates Nilay Hazari · Organic Letters 29 2016 Quaternary Organic Solar Cells Enhanced by Cocrystalline Squaraines with Power Conversion Efficiencies >10% Nilay Hazari · Advanced Energy Materials · needs review 58 2015 Base-Free Methanol Dehydrogenation Using a Pincer-Supported Iron Compound and Lewis Acid Co-Catalyst Nilay Hazari · ACS Catalysis 230 2015 Co-evaporated Bi-squaraine Inverted Solar Cells: Enhancement Due to Energy Transfer and Open Circuit Voltage Control Nilay Hazari · ACS Photonics 53 2015 Comparison of dppf-Supported Ni Precatalysts for the Suzuki-Miyaura Reaction: The Observation and Activity of Ni(I) Nilay Hazari · Angewandte Chemie International Edition 109 2015 Comparison of the Catalytic Activity for the Suzuki-Miyaura Reaction of (5-Cp)Pd(IPr)Cl with (3-cinnamyl)Pd(IPr)(Cl) and (3-1-tBu-indenyl)Pd(IPr)(Cl) Nilay Hazari · Beilstein Journal of Organic Chemistry 12 2015 Design of a Versatile and Improved Precatalyst for Palladium Catalyzed Cross-Coupling: (3-1-tBu-indenyl)2(-Cl)2Pd2 Nilay Hazari · ACS Catalysis 167 2015 Enhanced CO2 Electroreduction Efficiency Through Secondary Coordination Effects on a Pincer Iridium Catalyst Nilay Hazari · Chemical Communications 65 2015 Iron Catalyzed CO2 Hydrogenation to Formate Enhanced by Lewis Acid Co-Catalysts Nilay Hazari · Chemical Science 382
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2020 · article · journal

Additive-Free Formic Acid Dehydrogenation Using a Pincer-Supported Iron Catalyst.

ChemCatChem · Nilay Hazari

in CV in OpenAlex
noneScholar citations
46OpenAlex citations

From the CV

lines 86–88 · published

126. Curley, J. B.; Bernskoetter, W. H.; Hazari, N. 'Additive-Free Formic Acid Dehydrogenation Using a Pincer-SupportedIron Catalyst.' ChemCatChem. 2020, 12, 1934-1938.

Peer reviewed
yes
First author
Curley
Co-authors
Curley, J. B.; Bernskoetter, W. H.; Hazari, N.
Subfield
other
Method
none
Invited
none
Publisher
none
Reprint or translation
none
DOI
10.1002/cctc.202000066
OpenAlex
W3006183697

Where each field came from

FieldCVOpenAlexScholarCrossRef
title Additive-Free Formic Acid Dehydrogenation Using a Pincer-Supported Iron Catalyst. (used)Additive‐Free Formic Acid Dehydrogenation Using a Pincer‐Supported Iron Catalyst
year 2020 (used)2020
venue ChemCatChem.ChemCatChemChemCatChem (used)
kind article (used)article
DOI 10.1002/cctc.202000066 (used)10.1002/cctc.202000066
first author CurleyCurley (used)

The value in bold is the one the record uses.

How the records were joined

  • doi merged · 1.00 · Run 18