Haque Farjana, Daeneke Torben, Kalantar-Zadeh Kourosh, Ou Jian Zhen
School of Engineering, RMIT University, Melbourne, Australia.
Nanomicro Lett. 2018;10(2):23. doi: 10.1007/s40820-017-0176-y. Epub 2017 Dec 8.
Two-dimensional (2D) transition metal oxide and chalcogenide (TMO&C)-based photocatalysts have recently attracted significant attention for addressing the current worldwide challenges of energy shortage and environmental pollution. The ultrahigh surface area and unconventional physiochemical, electronic and optical properties of 2D TMO&Cs have been demonstrated to facilitate photocatalytic applications. This review provides a concise overview of properties, synthesis methods and applications of 2D TMO&C-based photocatalysts. Particular attention is paid on the emerging strategies to improve the abilities of light harvesting and photoinduced charge separation for enhancing photocatalytic performances, which include elemental doping, surface functionalization as well as heterojunctions with semiconducting and conductive materials. The future opportunities regarding the research pathways of 2D TMO&C-based photocatalysts are also presented.
二维(2D)过渡金属氧化物和硫族化物(TMO&C)基光催化剂最近在应对当前全球能源短缺和环境污染挑战方面引起了广泛关注。二维TMO&C具有超高的表面积以及非常规的物理化学、电子和光学性质,已被证明有助于光催化应用。本文综述简要概述了二维TMO&C基光催化剂的性质、合成方法及应用。特别关注了提高光捕获和光生电荷分离能力以增强光催化性能的新兴策略,包括元素掺杂、表面功能化以及与半导体和导电材料形成异质结。文中还介绍了二维TMO&C基光催化剂研究途径的未来机遇。