Khan Karim, Tareen Ayesha Khan, Aslam Muhammad, Sagar Rizwan Ur Rehman, Zhang Bin, Huang Weichun, Mahmood Asif, Mahmood Nasir, Khan Kishwar, Zhang Han, Guo Zhongyi
School of Electrical Engineering and Intelligentization, Dongguan University of Technology (DGUT), Dongguan, 523808, Guangdong, People's Republic of China.
Institute of Microscale Optoelectronics, Collaborative Innovation Centre for Optoelectronic Science and Technology, Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Physics and Optoelectronic Engineering, Shenzhen Key Laboratory of Micro-Nano Photonic Information Technology, Guangdong Laboratory of Artificial Intelligence and Digital Economy (SZ), Shenzhen University, Shenzhen, 518060, People's Republic of China.
Nanomicro Lett. 2020 Aug 15;12(1):167. doi: 10.1007/s40820-020-00504-3.
The successful photo-catalyst library gives significant information on feature that affects photo-catalytic performance and proposes new materials. Competency is considerably significant to form multi-functional photo-catalysts with flexible characteristics. Since recently, two-dimensional materials (2DMs) gained much attention from researchers, due to their unique thickness-dependent uses, mainly for photo-catalytic, outstanding chemical and physical properties. Photo-catalytic water splitting and hydrogen (H) evolution by plentiful compounds as electron (e) donors is estimated to participate in constructing clean method for solar H-formation. Heterogeneous photo-catalysis received much research attention caused by their applications to tackle numerous energy and environmental issues. This broad review explains progress regarding 2DMs, significance in structure, and catalytic results. We will discuss in detail current progresses of approaches for adjusting 2DMs-based photo-catalysts to assess their photo-activity including doping, hetero-structure scheme, and functional formation assembly. Suggested plans, e.g., doping and sensitization of semiconducting 2DMs, increasing electrical conductance, improving catalytic active sites, strengthening interface coupling in semiconductors (SCs) 2DMs, forming nano-structures, building multi-junction nano-composites, increasing photo-stability of SCs, and using combined results of adapted approaches, are summed up. Hence, to further improve 2DMs photo-catalyst properties, hetero-structure design-based 2DMs' photo-catalyst basic mechanism is also reviewed.
成功的光催化剂库提供了有关影响光催化性能的特征的重要信息,并提出了新材料。能力对于形成具有灵活特性的多功能光催化剂具有相当重要的意义。近年来,二维材料(2DMs)因其独特的厚度依赖性用途,主要用于光催化,具有出色的化学和物理性质,而受到研究人员的广泛关注。通过大量化合物作为电子供体进行光催化水分解和析氢(H)被认为参与构建太阳能制氢的清洁方法。多相光催化因其在解决众多能源和环境问题方面的应用而受到广泛的研究关注。这篇综述解释了二维材料的进展、结构意义和催化结果。我们将详细讨论基于二维材料的光催化剂的调控方法的当前进展,以评估其光活性,包括掺杂、异质结构设计和功能形成组装。总结了一些建议方案,例如半导体二维材料的掺杂和敏化、提高电导率、改善催化活性位点、加强半导体二维材料中的界面耦合、形成纳米结构、构建多结纳米复合材料、提高半导体的光稳定性以及利用适配方法的综合结果。因此,为了进一步改善二维材料光催化剂的性能,还综述了基于异质结构设计的二维材料光催化剂的基本机制。