4.8 Article

Boron-Induced Electronic-Structure Reformation of CoP Nanoparticles Drives Enhanced pH-Universal Hydrogen Evolution

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 59, Issue 10, Pages 4154-4160

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201915254

Keywords

B-doping; carbon nanotubes (CNTs); electronic structure reformation; hydrogen evolution reaction (HER); transition-metal phosphide catalysts

Funding

  1. National Natural Science Foundation of China [21573062, 51002046, 21901065]
  2. Natural Science Foundation of Heilongjiang Province [B2018008]
  3. Youth Science and Technology Innovation Team Project of Heilongjiang Province [2018-KYYWF-1593]
  4. University Nursing Program for Young Scholars with Creative Talents in Heilongjiang Province [UNPYSCT-2018009]

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Even though transition-metal phosphides (TMPs) have been developed as promising alternatives to Pt catalyst for the hydrogen evolution reaction (HER), further improvement of their performance requires fine regulation of the TMP sites related to their specific electronic structure. Herein, for the first time, boron (B)-modulated electrocatalytic characteristics in CoP anchored on the carbon nanotubes (B-CoP/CNT) with impressive HER activities over a wide pH range are reported. The HER performance surpasses commercial Pt/C in both neutral and alkaline media at large current density (>100 mA cm(-2)). A combined experimental and theoretical study identified that the B dopant could reform the local electronic configuration and atomic arrangement of bonded Co and adjacent P atoms, enhance the electrons' delocalization capacity of Co atoms for high electrical conductivity, and optimize the free energy of H adsorption and H-2 desorption on the active sites for better HER kinetics.

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