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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Ultra-small freestanding amorphous molybdenum sulfide colloidal nanodots for highly efficient photocatalytic hydrogen evolution reaction
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Ultra-small freestanding amorphous molybdenum sulfide colloidal nanodots for highly efficient photocatalytic hydrogen evolution reaction

机译:超小型独立式无定形钼硫化物胶体纳米型高效光催化氢气进化反应

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摘要

Recently, molybdenum sulfide with its amorphous counterpart was found to hold a high activity versus the hydrogen evolution reaction (HER), making it a high potential material to explore new HER catalysts. Here we present a facile chemical method to synthesize ultra-small freestanding amorphous molybdenum sulfide (a-MoSx) colloidal nanodots with diameter of lower than 2 nm. Electrocatalytic HER tests show that freestanding a-MoSx colloidal nanodots exhibit an enhanced catalytic hydrogen activity in stark in contrast with in-situ annealed c-MoS2. When applied as a co-catalyst in photocatalytic HER, ultra-small a-MoSx nanodots could form a compact interface with the TiO2 when assisted by a bifunctional molecular linker, as the mercaptopropionic acid (MPA), which facilitates the decrease of the interfacial Schottky barrier occurring between the two components and allows for a fast injection of photo-excited electrons from the photoharvester into the co-catalyst. Our results demonstrate that the drastic enhancement of the photocatalytic H-2 promotion rate of a-MoSx@MPA-TiO2 is mainly provided by unsaturated Mo(IV) active sites generated by the in-situ reduction during the photocatalytic HER process. The synergistic effect of generated unsaturated Mo(IV) sites and the presence of more exposed intrinsic active edges further promotes the enhancement of the catalytic H-2 activity on a-MoSx nanodots.
机译:最近,发现钼硫化物与其无定形对应物保持高活性与氢进化反应(她),使其成为探索新催化剂的高潜在材料。在这里,我们提出了一种容易化学方法,用于合成直径低于2nm的超小型独立钼硫化物(A-MOSX)胶体纳米蛋白。电催化她的测试表明,独立式A-MOSX胶体纳米液表现出与原位退火的C-MOS2相反的颗粒状的增强型催化氢活性。当作为光催化剂中的助催化剂施加时,当通过双官能分子接头时,超小A-MOSX纳米蛋白可以在双官能分子接头时与TiO 2形成紧凑的界面,作为巯基丙酸(MPA),这有利于界面肖特基的减少两种组分之间发生的屏障,并允许从光烧干进入助催化剂的光激发电子。我们的结果表明,A-MOSX @ MPA-TiO2的光催化H-2促进率的激烈增强主要由在光催化期间原位减少产生的不饱和Mo(IV)活性位点提供。产生的不饱和Mo(IV)位点和更暴露的内在活性边缘存在的协同效应进一步促进了催化H-2活性对A-MOSX纳米蛋白的增强。

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