Structural change of molybdenum sulfide facilitates the electrocatalytic hydrogen evolution reaction at neutral pH as revealed by in situ Raman spectroscopy

被引:45
作者
Li, Yamei [1 ]
Nakamura, Ryuhei [1 ,2 ]
机构
[1] RIKEN, Ctr Sustainable Resource Sci, Biofunct Catalyst Res Team, 2-1 Hirosawa, Wako, Saitama 3510198, Japan
[2] Tokyo Inst Technol, Earth Life Sci Inst, Meguro Ku, 2-12-1-17E Ookayama, Tokyo 1528550, Japan
关键词
Hydrogen evolution reaction; Molybdenum sulfide; Electrocatalyst; In-situ Raman spectroscopy; Artificial photosynthesis; Clean energy; MOS2 ULTRATHIN NANOSHEETS; ACTIVE EDGE SITES; SULFUR-ATOMS; PURE WATER; CATALYST; IDENTIFICATION; REDUCTION; COMPLEXES; H-2;
D O I
10.1016/S1872-2067(17)62945-0
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Molybdenum sulfides are promising electrocatalysts for the hydrogen evolution reaction (HER). Sand Mo-related species have been proposed as the active site for forming adsorbed hydrogen to initiate the HER; however, the nature of the interaction between Mo centers and S ligands is unclear. Further, the development of cost-effective water-splitting systems using neutral water as a proton source for H-2 evolution is highly desirable, whereas the mechanism of the HER at neutral pH is rarely discussed. Here, the structural change in the Mo-Mo and S-S species in a synthesized molybdenum sulfide was monitored at neutral pH using in situ electrochemical Raman spectroscopy. Analysis of the potential dependent Raman spectra revealed that the band assigned to a terminal S-S species emerged along with synchronized changes in the frequency of the Mo-Mo, Mo-3-mu S-3, and Mo-S vibrational bands. This indicates that Mo-Mo bonds and terminal S-S ligands play synergistic roles in facilitating hydrogen evolution, likely via the internal reorganization of trinuclear Mo-3-thio species. The nature and role of metal-ligand interactions in the HER revealed in this study demonstrated a mechanism that is distinct from those reported previously in which the S or Mo sites function independently. (C) 2018, Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:401 / 406
页数:6
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