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通过过渡金属掺杂对钼硫簇电催化剂活性位点进行调控

Active site manipulation in MoS cluster electrocatalysts by transition metal doping.

作者信息

Humphrey Jo J L, Kronberg Rasmus, Cai Rongsheng, Laasonen Kari, Palmer Richard E, Wain Andrew J

机构信息

National Physical Laboratory, Hampton Road, Teddington, TW11 0LW, UK.

Department of Chemistry and Materials Science, Aalto University, P.O. Box 16100, 00076 Aalto, Finland.

出版信息

Nanoscale. 2020 Feb 20;12(7):4459-4472. doi: 10.1039/c9nr10702a.

Abstract

The development of non-platinum group metal catalysts for the hydrogen evolution reaction (HER) in water electrolyser devices is essential for their widespread and sustainable deployment. In recent years, molybdenum disulfide (MoS2) catalysts have received significant attention as they not only exhibit good electrocatalytic HER activity but also, crucially, acid-stability. However, further performance enhancement is required for these materials to be competitive with Pt and to that end transition metal doping of MoS2 has been explored as a route to further increasing its catalytic activity. In this work, cluster beam deposition was employed to produce controlled cobalt-doped MoS2 clusters (MoS2-Co). We demonstrate that, in contrast to previous observations of performance enhancement in MoS2 resulting from nickel doping (MoS2-Ni), the introduction of Co has a detrimental effect on HER activity. The contrasting behaviours of Ni and Co doping are rationalized by density functional theory (DFT) calculations, which suggest that HER-active surface vacancies are deactivated by combination with Co dopant atoms, whilst their activity is retained, or even partially enhanced, by combination with Ni dopant atoms. Furthermore, the adatom dopant-vacancy combination kinetics appear to be more than three orders of magnitude faster in MoS2-Co than for MoS2-Ni. These findings highlight a fundamental difference in the influence of transition metal dopants on the HER performance of MoS2 electrocatalysts and stress the importance of considering surface atomic defects when predicting their behaviour.

摘要

开发用于水电解槽装置中析氢反应(HER)的非铂族金属催化剂对于其广泛且可持续的应用至关重要。近年来,二硫化钼(MoS2)催化剂受到了广泛关注,因为它们不仅具有良好的电催化HER活性,而且至关重要的是具有酸稳定性。然而,要使这些材料与铂具有竞争力,还需要进一步提高其性能,为此人们探索了对MoS2进行过渡金属掺杂,作为进一步提高其催化活性的途径。在这项工作中,采用团簇束沉积法制备了可控的钴掺杂MoS2团簇(MoS2-Co)。我们证明,与先前观察到的镍掺杂(MoS2-Ni)导致MoS2性能增强的情况相反,引入钴对HER活性有不利影响。镍和钴掺杂的不同行为通过密度泛函理论(DFT)计算得到了合理的解释,该计算表明,HER活性表面空位会因与钴掺杂原子结合而失活,而与镍掺杂原子结合时,它们的活性得以保留,甚至部分增强。此外,MoS2-Co中吸附原子掺杂剂-空位的结合动力学似乎比MoS2-Ni快三个数量级以上。这些发现突出了过渡金属掺杂剂对MoS2电催化剂HER性能影响的根本差异,并强调了在预测其行为时考虑表面原子缺陷的重要性。

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