论文标题

在有希望的X2PA(X = SI,GE和SN)单层中,双轴应变对电子,光学和光催化特性的调节作用

Regulating effect of biaxial strain on electronic, optical and photocatalytic properties in promising X2PAs (X = Si, Ge and Sn) monolayers

论文作者

He, Qi-Wen, Wu, Yang, Yang, Chun-Hua, Zhang, He-Na, Tang, Dai-Song, Liu, Cailong, Wang, Xiao-Chun

论文摘要

光催化水分裂是获得可再生清洁能量的有效方法。挑战是设计可调的光催化剂,以满足不同环境中的需求。同时,应分离光催化剂上的氧和氢进化反应(OER和她),这将有助于分离产物。 Janus X2PA(X = SI,GE和SN)单层的电子,光学和光催化特性通过第一原理计算探索。所有无应变X2PA的单层均表现出出色的光催化特性,具有合适的带缘位置,跨越了水和大型可见光吸收系数的标准氧化还原电位(高达105 cm-1)。有趣的是,内在的内部电场有利于将光生载体分离到单层的不同表面。它有助于意识到OER和她在单层的不同侧面分开。特别是,可以通过双轴菌株对X2PAS单层的能带边缘位置进行很好的调节。然后,它可以有效地调节光催化反应,这表明X2PAS单层可以是OER,她和氧化还原的全反应之间的压电催化转换。这项研究不仅强调,具有分离的OER的光催化剂X2PA单层可以通过机械菌株有效调节,而且还提供了设计高度适应性和可调的压电量催化剂的新策略。

Photocatalytic water splitting is an effective way to obtain renewable clean energy. The challenge is to design tunable photocatalyst to meet the needs in different environments. At the same time, the oxygen and hydrogen evolution reactions (OER and HER) on the photocatalyst should be separated, which will be conducive to the separation of products. The electronic, optical and photocatalytic properties of Janus X2PAs (X = Si, Ge and Sn) monolayers are explored by first-principles calculation. All the strain-free X2PAs monolayers exhibit excellent photocatalytic properties with suitable band edge positions straddling the standard redox potential of water and large visible light absorption coefficients (up to 105 cm-1). Interestingly, the intrinsic internal electric field is favorable for separating photogenerated carriers to different surfaces of the monolayer. It contributes to realize the OER and HER separated on different sides of the monolayer. In particular, the energy band edge positions of X2PAs monolayers can be well adjusted by biaxial strain. Then it can effectively modulate photocatalytic reactions, suggesting X2PAs monolayers can be a piezo-photocatalytic switch between the OER, HER and full-reaction of redox for water splitting. This investigation not only highlights that the photocatalyst X2PAs monolayers with the separated OER and HER can be effectively tuned by the mechanical strain, but also provides a new strategy for designing highly adaptable and tunable piezo-photocatalysts.

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