Yang Ying, Gong Jialin, Wang Xiaotian, Cheng Zhenxiang, Yang Tie
College of Physics and Electronic Engineering Chongqing Normal University Chongqing 401331 China.
School of Physical Science and Technology Southwest University Chongqing 400715 China.
Small Sci. 2024 Jul 22;4(10):2400160. doi: 10.1002/smsc.202400160. eCollection 2024 Oct.
The emerging field of topological catalysis has received significant attention due to its potential for high-performance catalytic activity in the hydrogen-evolution reaction (HER). While topological materials often possess fragile surface states, trivial topological materials not only offer a larger pool of candidates but also demonstrate robust surface states. As a result, the search for topological catalysts has expanded to include trivial schemes. In this study, a novel 2D Janus monolayer, MoSMg, which demonstrates exceptional obstructed atomic insulating behavior, is presented. Crucially, this trivial metallic topological state exhibits clean obstructed surface states, leading to a significant enhancement in catalytic performance for the HER in electrochemical processes, particularly under high hydrogen coverage. Moreover, the edge sites of this MoSMg monolayer exhibit even more superior catalytic activity, characterized by near-zero Gibbs free energies. In these findings, the way is paved for exploring new avenues in the design of quantum electrocatalysts, especially within the realm of trivial topological materials.
拓扑催化这一新兴领域因其在析氢反应(HER)中具有实现高性能催化活性的潜力而备受关注。虽然拓扑材料通常具有脆弱的表面态,但平凡拓扑材料不仅提供了更多的候选材料,还展现出稳健的表面态。因此,对拓扑催化剂的探索已扩展到包括平凡体系。在本研究中,提出了一种新型二维Janus单原子层MoSMg,它表现出特殊的受阻原子绝缘行为。至关重要的是这种平凡金属拓扑态呈现出干净的受阻表面态,从而在电化学过程中,特别是在高氢覆盖下,显著提高了析氢反应的催化性能。此外,这种MoSMg单原子层的边缘位点表现出更优异的催化活性,其吉布斯自由能接近零。这些发现为探索量子电催化剂设计的新途径铺平了道路,特别是在平凡拓扑材料领域。