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MoO(S)(2,2'-联吡啶)电催化析氢反应的阴离子氧化还原机制。

Anion-Redox Mechanism of MoO(S)(2,2'-bipyridine) for Electrocatalytic Hydrogen Production.

机构信息

Department of Chemistry and Biochemistry, The Ohio State University , 100 West 18th Avenue, Columbus, Ohio 43210, United States.

出版信息

J Am Chem Soc. 2017 Mar 29;139(12):4342-4345. doi: 10.1021/jacs.7b01350. Epub 2017 Mar 17.

Abstract

Redox processes of molybdenum-sulfide (Mo-S) compounds are important in the function of materials for various applications from electrocatalysts for the hydrogen evolution reaction (HER) to cathode materials for batteries. Our group has recently described a series of Mo-S molecular HER catalysts based on a MoO(S)L structural motif. Herein, reductive pathways of MoO(S)bpy (Mo-bpy) (bpy = 2,2'-bipyridine) are presented from both experimental and theoretical studies. We tracked chemical reduction of Mo-bpy with UV-vis spectroscopy using sodium napthalenide (NaNpth) as the reducing agent and found that Mo-bpy undergoes anionic persulfide reduction to form the tetragonal Mo(VI) complex [MoOS]. We also identified silver mercury amalgam as an inert working electrode (WE) for spectroectrochemical (SEC) studies. UV-vis spectra in the presence of trifluoroacetic acid with an applied potential confirmed that Mo-bpy maintains its structure during catalytic cycling. Finally, theoretical catalytic reaction pathways were explored, revealing that Mo=O may function as a proton relay. This finding together with the observed anion reduction as the redox center is of broad interest for amorphous Mo-S (a-MoS) electrocatalytic materials and anion-redox chalcogel battery materials.

摘要

钼-硫(Mo-S)化合物的氧化还原过程在各种应用的材料功能中很重要,从析氢反应(HER)的电催化剂到电池的阴极材料。我们小组最近描述了一系列基于 MoO(S)L 结构基序的 Mo-S 分子 HER 催化剂。本文从实验和理论研究两个方面介绍了 MoO(S)bpy(Mo-bpy)(bpy = 2,2'-联吡啶)的还原途径。我们使用萘钠(NaNpth)作为还原剂,通过紫外可见光谱跟踪 Mo-bpy 的化学还原,发现 Mo-bpy 经历阴离子过硫化物还原形成四方 Mo(VI)配合物[MoOS]。我们还确定银汞齐作为惰性工作电极(WE)用于光谱电化学(SEC)研究。施加电位的三氟乙酸存在下的紫外可见光谱证实,Mo-bpy 在催化循环过程中保持其结构。最后,探索了理论催化反应途径,表明 Mo=O 可能作为质子传递体发挥作用。这一发现以及观察到的阴离子还原作为氧化还原中心,对于非晶态 Mo-S(a-MoS)电催化材料和阴离子氧化还原 chalco凝胶电池材料具有广泛的兴趣。

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