4.8 Article

Molecular Cobalt Pentapyridine Catalysts for Generating Hydrogen from Water

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 133, Issue 24, Pages 9212-9215

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja202743r

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Funding

  1. DoE/LBNL Helios Solar Energy Research Center [51HE112B]
  2. DoE Joint Center for Artificial Photosynthesis
  3. National Science Foundation
  4. Miller Institute for Basic Research

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A set of robust molecular cobalt catalysts for the generation of hydrogen from water is reported. The cobalt complex supported by the parent pentadentate polypyridyl ligand PY5Me(2) features high stability and activity and 100% Faradaic efficiency for the electrocatalytic production of hydrogen from neutral water, with a turnover number reaching 5.5 x 10(4) mol of H(2) per mole of catalyst with no loss in activity over 60 h. Control experiments establish that simple Co(II) salts, the free PYSMe(2) ligand, and an isostructural PY5Me(2) complex containing redox-inactive Zn(II) are all ineffective for this reaction. Further experiments demonstrate that the overpotential for H(2) evolution can be tuned by systematic substitutions on the ancillary PYSMe(2) scaffold, presaging opportunities to further optimize this first-generation platform by molecular design.

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