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首页> 外文期刊>Nanoscale >Boosting the electrocatalytic activity of amorphous molybdenum sulfide nanoflakes via nickel sulfide decoration
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Boosting the electrocatalytic activity of amorphous molybdenum sulfide nanoflakes via nickel sulfide decoration

机译:增加的electrocatalytic活动非晶态硫化钼nanoflakes通过硫化镍装饰

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摘要

As a coordination polymer built of [Mo3S13](2-) clusters, amorphous nanoscale MoSx (a-MoSx) is an attractive electrocatalyst for the hydrogen evolution reaction (HER) due to its abundant active sites and scalable synthesis. However, clarifying the internal catalytic mechanism and achieving even higher HER performance with scalable size are still challenging. Herein, a new hybrid catalyst of a-MoSx flakes decorated with Ni3S2 nanocrystals (size < 10 nm) has been successfully synthesized on 10 x 20 cm(2)-sized Ni foam by a portable hydrothermal route. As the strong interaction of [Mo3S13](2-) clusters with Ni3S2 is evidenced by comprehensive binding state and Raman characterization, the polymerization effect of [Mo3S13](2-) itself and the perfect interfaces between [Mo3S13](2-) clusters and Ni3S2 are also confirmed by density functional theory calculations. These two factors greatly lower the absorption energy of hydrogen nearly to zero, leading to much improved HER activity. Current densities of 100 and 600 mA cm(-2) are achieved at overpotentials of 181 and 246 mV, respectively, which are so far the highest values approaching practical applications. The findings of this work provide a fundamental reference about the catalytic origin of a-MoSx based catalysts, and shed light on the practical applications of non-precious electrocatalysts for their compatibility with low cost batch production.
机译:的配位聚合物建立[Mo3S13] (2)集群,非晶纳米MoSx (a-MoSx)是一个有吸引力的electrocatalyst氢由于其丰富的进化反应(她)活跃的站点和可伸缩的合成。内部的催化机理和澄清实现更高的她的表演可伸缩的大小仍然是具有挑战性的。a-MoSx片装饰的新混合催化剂与Ni3S2纳米晶体(大小< 10海里)成功地合成了10倍20厘米(2)份泡沫镍的便携式热液的路线。强相互作用(Mo3S13)(2 -)集群Ni3S2全面描写就是绑定状态和拉曼表征,聚合的影响(Mo3S13)(2 -)本身和完美之间的接口(Mo3S13)(2 -)集群Ni3S2也证实了密度泛函理论计算。降低氢的吸收能量近零,从而大大改善了她的活动。电流密度的100年和600年马厘米(2)实现了在181年和246年mV过电压,分别,这是迄今为止的最高价值接近实际应用。这项工作提供了一个基本的参考基于催化a-MoSx起源催化剂,并阐明实用应用non-precious electrocatalysts与低成本批量的兼容性生产。

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