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Chemistry

D-Index
76
Citations
22615
World Ranking
4207
National Ranking
1331

Research.com Recognitions

  • 1980 - Fellow of John Simon Guggenheim Memorial Foundation

Overview

James T. Muckerman is a researcher affiliated with the Brookhaven National Laboratory in the United States. Their work is connected to scientific research environments, leveraging resources and expertise available at a national laboratory known for multidisciplinary scientific advancements.

Throughout their career, James T. Muckerman has been recognized as a Fellow of the John Simon Guggenheim Memorial Foundation, an honor awarded in 1980. This fellowship supports individuals who have demonstrated exceptional capacity for productive scholarship in their respective fields.

The scientist's body of work does not list recent papers, coauthors, or a collection of publication venues, which suggests a more focused or possibly historical contribution to their field. Similarly, no data on specific books, fields of study, or main research topics have been detailed in the provided information.

Although detailed specifics about their research topics or contributions are unavailable, the affiliation with Brookhaven National Laboratory indicates involvement in research typically associated with physics, chemistry, materials science, or related interdisciplinary areas.

The absence of detailed bibliographic and collaborative data limits the view into the exact nature of their scientific output, yet the noted award points to a recognized standing within the academic community.

Best Publications

  • CO2 Hydrogenation to Formate and Methanol as an Alternative to Photo- and Electrochemical CO2 Reduction

    Wan Hui Wang;Yuichiro Himeda;James T. Muckerman;Gerald F. Manbeck

  • Hydrogen-evolution catalysts based on non-noble metal nickel-molybdenum nitride nanosheets.

    Wei Fu Chen;Kotaro Sasaki;Chao Ma;Anatoly I. Frenkel

  • Recent developments in transition metal carbides and nitrides as hydrogen evolution electrocatalysts

    Wei Fu Chen;James T. Muckerman;Etsuko Fujita

  • Highly active and durable nanostructured molybdenum carbide electrocatalysts for hydrogen production

    W.-F. Chen;C.-H. Wang;K. Sasaki;N. Marinkovic

  • Reversible hydrogen storage using CO2 and a proton-switchable iridium catalyst in aqueous media under mild temperatures and pressures.

    Jonathan F Hull;Yuichiro Himeda;Wan-Hui Wang;Brian G Hashiguchi

  • Thermodynamics and kinetics of CO2, CO, and H+ binding to the metal centre of CO2 reduction catalysts.

    Jacob Schneider;Hongfei Jia;James T. Muckerman;Etsuko Fujita

  • Hydrogen oxidation and production using nickel-based molecular catalysts with positioned proton relays

    Aaron D. Wilson;Rachel H. Newell;Michael J. McNevin;James T. Muckerman

  • Mechanism of water oxidation by single-site ruthenium complex catalysts.

    Javier J. Concepcion;Ming Kang Tsai;James T. Muckerman;Thomas J. Meyer

  • Mononuclear ruthenium(II) complexes that catalyze water oxidation.

    Huan Wei Tseng;Ruifa Zong;James T. Muckerman;Randolph Thummel

  • Reactive Scattering Cross Sections III: Quasiclassical and Semiclassical Methods

    Donald G. Truhlar;James T. Muckerman

  • Biomass-derived electrocatalytic composites for hydrogen evolution

    Wei Fu Chen;Shilpa Iyer;Shweta Iyer;Kotaro Sasaki

  • Monte Carlo Calculations of Energy Partitioning and Isotope Effects in Reactions of Fluorine Atoms with H2, HD, and D2

    James Muckerman

  • Nature of hydrogen interactions with Ni(II) complexes containing cyclic phosphine ligands with pendant nitrogen bases

    Aaron D. Wilson;R. K. Shoemaker;A. Miedaner;J. T. Muckerman

  • Classical Dynamics of the Reaction of Fluorine Atoms with Hydrogen Molecules. II. Dependence on the Potential Energy Surface

    James T. Muckerman

  • Some useful discrete variable representations for problems in time-dependent and time-independent quantum mechanics

    James T. Muckerman

  • Mechanisms for CO production from CO2 using reduced rhenium tricarbonyl catalysts.

    Jay Agarwal;Jay Agarwal;Etsuko Fujita;Henry F. Schaefer;James T. Muckerman

  • Theoretical studies of the mechanism of catalytic hydrogen production by a cobaloxime

    James T. Muckerman;Etsuko Fujita

  • Second-coordination-sphere and electronic effects enhance iridium(III)-catalyzed homogeneous hydrogenation of carbon dioxide in water near ambient temperature and pressure

    Wan Hui Wang;Jonathan F. Hull;James T. Muckerman;Etsuko Fujita

  • Mechanistic Insight through Factors Controlling Effective Hydrogenation of CO2 Catalyzed by Bioinspired Proton-Responsive Iridium(III) Complexes

    Wan Hui Wang;James T. Muckerman;Etsuko Fujita;Yuichiro Himeda

  • Water oxidation by a ruthenium complex with noninnocent quinone ligands: possible formation of an O-O bond at a low oxidation state of the metal.

    James T. Muckerman;Dmitry E. Polyansky;Tohru Wada;Koji Tanaka

Frequent Co-Authors

Etsuko Fujita
Etsuko Fujita Brookhaven National Laboratory
Yuichiro Himeda
Yuichiro Himeda National Institute of Advanced Industrial Science and Technology
Mark S. Hybertsen
Mark S. Hybertsen Brookhaven National Laboratory
Jason Graetz
Jason Graetz HRL Laboratories (United States)
Trevor J. Sears
Trevor J. Sears Stony Brook University
Carol Creutz
Carol Creutz Brookhaven National Laboratory
Kazuhisa Murata
Kazuhisa Murata National Institute of Advanced Industrial Science and Technology
Randolph P. Thummel
Randolph P. Thummel University of Houston
Kotaro Sasaki
Kotaro Sasaki Brookhaven National Laboratory
George W. Flynn
George W. Flynn Columbia University

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