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Anion–Cation Double Substitution in Transition Metal Dichalcogenide to Accelerate Water Dissociation Kinetic for Electrocatalysis

机译:过渡金属二硫属元素化物中的阴离子-阳离子双取代,可加速水分解解动力学,用于电催化

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Until now, many works have shown that the hydrogen evolution reaction (HER) performance can be improved by anion or cation substitution into the crystal lattice of pyrite-structure materials. However, the synergistic effects of anion-cation double substitution for overall enhancement of the catalytic activity remains questionable. Here, the simultaneous incorporation of vanadium and phosphorus into the CoS2 moiety for preparing 3D mesoporous cubic pyrite-metal Co1-xVxSP is presented. It is demonstrated that the higher catalytic activity of CoS2 after V incorporation can be primarily attributed to abundance active sites, whereas P substitution is responsible for improving HER kinetics and intrinsic catalyst. Interestingly, due to the synergistic effect of P-V double substitution, the 3D Co1-xVxSP shows superior electrocatalysis toward the HER with a very small overpotential of 55 mV at 10 mA cm(-2), a small Tafel slope of 50 mV dec(-1), and a high turnover frequency of 0.45 H-2 s(-1) at 10 mA cm(-2), which is very close to commercial 20% Pt/C. Density functional theory calculation reveals that the superior catalytic activity of the 3D Co1-xVxSP is contributed by the reduced kinetic energy barrier of rate-determining HER step as well as the promotion of the desorption H-2 gas process.
机译:迄今为止,许多工作表明,通过将阴离子或阳离子取代入黄铁矿结构材料的晶格中,可以改善氢释放反应(HER)的性能。然而,阴离子阳离子双取代对于整体提高催化活性的协同作用仍然是可疑的。在此,提出了将钒和磷同时掺入CoS2部分中以制备3D中孔立方黄铁矿-金属Co1-xVxSP。事实证明,加入V后CoS2的较高催化活性可主要归因于丰富的活性位点,而P取代可改善HER动力学和内在催化剂。有趣的是,由于PV双取代的协同作用,3D Co1-xVxSP对HER显示出优异的电催化作用,在10 mA cm(-2)时有55 mV的非常小的超电势,在50 mV dec(-)的小Tafel斜率1),并且在10 mA cm(-2)时具有0.45 H-2 s(-1)的高周转频率,这非常接近20%Pt / C的商品价格。密度泛函理论计算表明,3D Co1-xVxSP的优异催化活性是由降低速率决定HER步骤的动能壁垒以及促进解吸H-2气体过程贡献的。

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