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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Active edge sites in MoSe2 and WSe2 catalysts for the hydrogen evolution reaction: a density functional study
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Active edge sites in MoSe2 and WSe2 catalysts for the hydrogen evolution reaction: a density functional study

机译:MoSe2和WSe2催化剂中用于氢释放反应的活性边缘位点:密度泛函研究

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MoSe2 and WSe2 nanofilms and nanosheets have recently been shown to be active for electrochemical H2 evolution (HER). In this work, we used periodic density functional theory to investigate the origin of the catalytic activity on these materials. We determined the relevant structures of the Mo/W-edges and the Se-edges under HER conditions and their differential hydrogen adsorption free energies. The Mo-edge on MoSe2 and the Se-edge on both MoSe2 and WSe2 are found to be the predominantly active facets for these catalysts, with activity predicted to be comparable to or better than MoS2. On the other hand, the (0001) basal planes are found to be inert. We further explain the enhanced activity at the edges in terms of localized edge states, which provide insight into the trends in HER activity seen between the two catalysts. Our results thus suggest that an optimal catalyst design should maximize the exposure of edge sites. Comparisons are also made between the transition metal selenide catalysts and their sulfide counterparts in order to understand the consequences of having either Mo/W or Se/S atoms. It is found that linear scaling relations describe the S/Se binding onto the edge and the H binding onto the S/Se.
机译:MoSe2和WSe2纳米膜和纳米片最近被证明对电化学H2释放(HER)具有活性。在这项工作中,我们使用周期密度泛函理论来研究这些材料上催化活性的起源。我们确定了在HER条件下Mo / W边缘和Se边缘的相关结构及其微分的氢吸附自由能。已发现MoSe2上的Mo-edge以及MoSe2和WSe2上的Se-edge是这些催化剂的主要活性面,预计其活性与MoS2相当或更好。另一方面,发现(0001)基面是惰性的。我们根据局部边缘状态进一步解释了边缘处活性的增强,从而提供了对两种催化剂之间HER活性趋势的了解。因此,我们的结果表明,最佳的催化剂设计应使边缘部位的暴露最大化。为了理解具有Mo / W或Se / S原子的后果,还对过渡金属硒化物催化剂及其对应的硫化物进行了比较。发现线性比例关系描述了S / Se结合到边缘和H结合到S / Se。

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