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通过P掺杂进行轨道调制可改善MoS的酸性和碱性析氢反应。

Orbital Modulation with P Doping Improves Acid and Alkaline Hydrogen Evolution Reaction of MoS.

作者信息

Dong Fuyu, Zhang Minghao, Xu Xiaoyong, Pan Jing, Zhu Liyan, Hu Jingguo

机构信息

College of Physics Science and Technology, Yangzhou University, Yangzhou 225002, China.

School of Physics and Electronic & Electrical Engineering, Huaiyin Normal University, Huai'an 223300, China.

出版信息

Nanomaterials (Basel). 2022 Dec 1;12(23):4273. doi: 10.3390/nano12234273.

Abstract

There has been great interest in developing and designing economical, stable and highly active electrocatalysts for the hydrogen evolution reaction (HER) via water splitting in an aqueous solution at different pH values. Transition-metal dichalcogenides (TMDCs), e.g., MoS, are identified to be promising catalysts for the HER due to the limited active sites at their edges, while the large basal plane of MoS is inert and shows poor performance in electrocatalytic hydrogen production. We theoretically propose orbital modulation to improve the HER performance of the basal plane of MoS through non-metal P doping. The substitutional doping of P provides empty 3 orbitals, perpendicular to the basal plane, can enhance the hydrogen adsorption for acid HER and can promote water dissociation for alkaline HER, which creates significant active sites and enhances the electronic conductivity as well. In addition, 3P-doped MoS exhibits excellent HER catalytic activity with ideal free energy at acid media and low reaction-barrier energy in alkaline media. Thus, the doping of P could significantly boost the HER activity of MoS in such conditions. Our study suggests an effective strategy to tune HER catalytic activity of MoS through orbital engineering, which should also be feasible for other TMDC-based electrocatalysts.

摘要

人们对开发和设计经济、稳定且高活性的电催化剂有着浓厚兴趣,这些催化剂用于在不同pH值的水溶液中通过水分解进行析氢反应(HER)。过渡金属二硫属化物(TMDCs),例如MoS,由于其边缘活性位点有限,被认为是有前景的HER催化剂,而MoS的大基面是惰性的,在电催化制氢中表现不佳。我们从理论上提出通过非金属P掺杂来改善MoS基面的HER性能。P的取代掺杂提供了垂直于基面的空3轨道,可增强酸性HER的氢吸附,并能促进碱性HER的水离解,这创造了大量活性位点并提高了电子导电性。此外,3P掺杂的MoS在酸性介质中具有理想自由能且在碱性介质中具有低反应势垒能量,展现出优异的HER催化活性。因此,在这种条件下,P掺杂可显著提高MoS的HER活性。我们的研究提出了一种通过轨道工程调节MoS的HER催化活性的有效策略,这对于其他基于TMDC的电催化剂也应该是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6d6/9740413/ea82daece5f3/nanomaterials-12-04273-g001.jpg

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