Övgü Ceyda Yelgel
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引用次数: 0

摘要

机械应变的应用是调整和优化材料物理性能的关键技术,使其在各种应用中具有潜在的用途,包括可再生能源和纳米电子学。通过水裂解制氢被认为是解决能源危机的一种很有希望的方法。因此,需要探索低成本、高效的光催化剂来实现这一过程。研究了WSSe/类石墨烯GaN (g-GaN)异质结构的电子特性、结构特性和能带取向。我们的研究结果表明,aa堆叠的WSSe/g-GaN异质结构的能带排列满足pH为7时的水氧化还原电位。为了研究调节对这两种异质结构的影响,施加了-2% ~ 2%的面外应变。结果表明,在异质结构上施加应变可以提高其光催化性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GaN-WSSe'nin Dikey Gerinim Altında Fotokatalitik Performansının İncelenmesi
The application of mechanical strain is a crucial technique to adjust and optimize the physical properties of materials, making them potentially useful for various applications, including renewable energy resources and nanoelectronics. Hydrogen production through water splitting has been proposed as a promising solution to the energy crisis. Therefore, there is a great demand for exploring low-cost and efficient photocatalysts for this process. We investigated the electronic properties, structural properties and band alignment of WSSe/graphene-like GaN (g-GaN) heterostructure. Our results reveal that the band alignment of the AA-stacked WSSe/g-GaN heterostructure satisfies the water redox potentials at a pH of 7. In order to investigate the effect of regulation on these two heterostructures, out of plane strain ranging from -2% to 2% is applied. Results show that applying strain to the heterostructure will enhace the photocatalytic properties which was evaluated based on the valence and conduction band edge potentials.
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