Jakhar Mukesh, Kumar Ashok, Ahluwalia Pradeep K, Tankeshwar Kumar, Pandey Ravindra
Department of Physics, Central University of Punjab, Bathinda 151401, India.
Department of Physics, Himachal Pradesh University, Shimla 171005, India.
Materials (Basel). 2022 Mar 17;15(6):2221. doi: 10.3390/ma15062221.
Splitting of water with the help of photocatalysts has gained a strong interest in the scientific community for producing clean energy, thus requiring novel semiconductor materials to achieve high-yield hydrogen production. The emergence of 2D nanoscale materials with remarkable electronic and optical properties has received much attention in this field. Owing to the recent developments in high-end computation and advanced electronic structure theories, first principles studies offer powerful tools to screen photocatalytic systems reliably and efficiently. This review is organized to highlight the essential properties of 2D photocatalysts and the recent advances in the theoretical engineering of 2D materials for the improvement in photocatalytic overall water-splitting. The advancement in the strategies including (i) single-atom catalysts, (ii) defect engineering, (iii) strain engineering, (iv) Janus structures, (v) type-II heterostructures (vi) Z-scheme heterostructures (vii) multilayer configurations (viii) edge-modification in nanoribbons and (ix) the effect of pH in overall water-splitting are summarized to improve the existing problems for a photocatalytic catalytic reaction such as overcoming large overpotential to trigger the water-splitting reactions without using cocatalysts. This review could serve as a bridge between theoretical and experimental research on next-generation 2D photocatalysts.
借助光催化剂分解水在科学界引起了对生产清洁能源的浓厚兴趣,因此需要新型半导体材料来实现高产氢。具有卓越电子和光学性质的二维纳米材料的出现,在该领域受到了广泛关注。由于高端计算和先进电子结构理论的最新发展,第一性原理研究提供了强大的工具,能够可靠且高效地筛选光催化体系。本综述旨在突出二维光催化剂的基本性质以及二维材料理论设计方面的最新进展,以改进光催化全分解水性能。文中总结了包括(i)单原子催化剂、(ii)缺陷工程、(iii)应变工程、(iv)Janus结构、(v)II型异质结构、(vi)Z型异质结构、(vii)多层结构、(viii)纳米带边缘修饰以及(ix)pH值对全分解水的影响等策略的进展,以改善光催化反应中存在的问题,比如在不使用助催化剂的情况下克服引发水分解反应的大过电位。本综述可作为下一代二维光催化剂理论与实验研究之间的桥梁。