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Chemistry

D-Index
98
Citations
35088
World Ranking
1391
National Ranking
537

Research.com Recognitions

  • 1963 - Fellow of Alfred P. Sloan Foundation

Overview

James P. Collman is affiliated with Stanford University in the United States. Their research spans multiple fields of study including Medicine and Biochemistry, Genetics and Molecular Biology, with a notable focus on subfields such as Physiology, Molecular Biology, Epidemiology, and Neurology.

Their body of work covers several main topics, which include:

  • Adipose Tissue and Metabolism
  • Mitochondrial Function and Pathology
  • Autophagy in Disease and Therapy
  • Neuroinflammation and Neurodegeneration Mechanisms
  • Alzheimer's disease research and treatments
  • Peroxisome Proliferator-Activated Receptors

James P. Collman has contributed to research published in reputable venues such as:

  • Proceedings of the National Academy of Sciences
  • Frontiers in Molecular Biosciences

Among the recent published papers are:

  • Moderation of mitochondrial respiration mitigates metabolic syndrome of aging, 2020, Proceedings of the National Academy of Sciences
  • Plasmalogens Eliminate Aging-Associated Synaptic Defects and Microglia-Mediated Neuroinflammation in Mice, 2022, Frontiers in Molecular Biosciences

Frequent collaborators of Collman include Lei Fu, Mojdeh S. Tavallaie, Ramouna Voshtani, Xinxian Deng, and Yixue Qiao.

In terms of career recognition, James P. Collman was named a Fellow of the Alfred P. Sloan Foundation in 1963.

Best Publications

  • Principles and applications of organotransition metal chemistry

    James P. Collman;Louis S. Hegedus

  • ′PICKET FENCE PORPHYRINS′, SYNTHETIC MODELS FOR OXYGEN BINDING HEMOPROTEINS

    James P. Collman;Robert R. Gagne;Christopher A. Reed;Thomas R. Halbert

  • Electrode catalysis of the four-electron reduction of oxygen to water by dicobalt face-to-face porphyrins

    James P. Collman;Peter Denisevich;Yutaka Konai;Matt Marrocco

  • Functional analogues of cytochrome c oxidase, myoglobin, and hemoglobin.

    James P. Collman;Roman Boulatov;Christopher J. Sunderland;Lei Fu

  • "Clicking" functionality onto electrode surfaces.

    James P. Collman;Neal K. Devaraj;Christopher E. D. Chidsey

  • A Cytochrome c Oxidase Model Catalyzes Oxygen to Water Reduction Under Rate-Limiting Electron Flux

    James P. Collman;Neal K. Devaraj;Richard A. Decréau;Ying Yang

  • Regioselective and enantioselective epoxidation catalyzed by metalloporphyrins

    James P. Collman;Xumu Zhang;Virgil J. Lee;Erich S. Uffelman

  • Molecular Catalysts for Multielectron Redox Reactions of Small Molecules: The “Cofacial Metallodiporphyrin” Approach

    James P. Collman;Paul S. Wagenknecht;James E. Hutchison

  • Nature of O2 and CO binding to metalloporphyrins and heme proteins.

    James P. Collman;John I. Brauman;Thomas R. Halbert;Kenneth S. Suslick

  • Mixed azide-terminated monolayers: a platform for modifying electrode surfaces.

    James P. Collman;Neal K. Devaraj;Todd P. A. Eberspacher;Christopher E. D. Chidsey

  • Reversible oxygen adduct formation in ferrous complexes derived from a picket fence porphyrin. Model for oxymyoglobin

    James P. Collman;Robert R. Gagne;Thomas R. Halbert;Jean C. Marchon

  • Patterns of organometallic reactions related to homogeneous catalysis

    James P. Collman

  • An efficient diamine.copper complex-catalyzed coupling of arylboronic acids with imidazoles

    James P. Collman;Min Zhong

  • Synthesis, stereochemistry, and structure-related properties of alpha, beta, gamma, delta-tetraphenylporphinatoiron(II).

    James P. Collman;J. L. Hoard;Nancy Kim;George Lang

  • Mechanistic aspects of the catalytic reduction of dioxygen by cofacial metalloporphyrins

    Richard R. Durand;C. Susana Bencosme;James P. Collman;Fred C. Anson

  • Potent catalysis of the electroreduction of oxygen to water by dicobalt porphyrin dimers adsorbed on graphite electrodes

    James P. Collman;Matt Marrocco;Peter Denisevich;Carl Koval

  • DIOXYGEN AND CARBONYL BINDING TO IRON(II) PORPHYRINS: A COMPARISON OF THE “PICKET FENCE” AND “POCKET” PORPHYRINS

    James P. Collman;John I. Brauman;Brent L. Iverson;Jonathan L. Sessler

  • Chemoselective covalent coupling of oligonucleotide probes to self-assembled monolayers

    Neal K. Devaraj;Gregory P. Miller;Wataru Ebina;Boyko Kakaradov

  • Epoxidation of olefins by cytochrome P-450 model compounds: kinetics and stereochemistry of oxygen atom transfer and origin of shape selectivity

    James P. Collman;John I. Brauman;Bernard Meunier;Teruyuki Hayashi

  • A Functional Model Related to Cytochrome c Oxidase and Its Electrocatalytic Four-Electron Reduction of O2

    James P. Collman;Lei Fu;Paul C. Herrmann;Xumu Zhang

Frequent Co-Authors

John I. Brauman
John I. Brauman Stanford University
James E. Hutchison
James E. Hutchison University of Oregon
Roger Guilard
Roger Guilard University of Burgundy
Geoffrey B. Jameson
Geoffrey B. Jameson Massey University
Xumu Zhang
Xumu Zhang Southern University of Science and Technology
Christopher A. Reed
Christopher A. Reed University of California, Riverside
Kenneth S. Suslick
Kenneth S. Suslick University of Illinois at Urbana-Champaign
Neal K. Devaraj
Neal K. Devaraj University of California, San Diego
Abhishek Dey
Abhishek Dey Indian Association for the Cultivation of Science
Christopher E. D. Chidsey
Christopher E. D. Chidsey Stanford University

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