College of Environmental Science and Engineering, Hunan University, Changsha 410082, PR China; Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha 410082, PR China.
College of Environmental Science and Engineering, Hunan University, Changsha 410082, PR China; Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha 410082, PR China.
J Hazard Mater. 2020 Nov 5;398:122957. doi: 10.1016/j.jhazmat.2020.122957. Epub 2020 May 17.
The development of carbon materials brings a new two-dimensional catalyst support, graphdiyne (GDY), which is attracting increasing interest in the field of catalysis. This article presents a systematical review of recent studies about the characteristics, design strategies, and applications of GDY-supported catalysts. The sp- and sp-hybridized carbon, high electrical conductivity, direct band gap, and high intrinsic carrier mobility are key characteristics for GDY to serve as a competitive catalyst support. Hydrothermal method (or solvothermal method), GDY in-situ growth, and electrochemical deposition are commonly used to load catalysts on GDY support. In the applications of GDY-supported photocatalysts, GDY mainly serves as an electron or hole transfer material. For the electrocatalytic hydrogen production, the unique electronic structure and high electrical conductivity of GDY can promote the electron transfer and water splitting kinetics. This review is expected to provide meaningful insight and guidance for the design of GDY-supported catalysts and their applications.
碳材料的发展带来了一种新的二维催化剂载体——石墨炔(GDY),它在催化领域引起了越来越多的关注。本文对 GDY 负载催化剂的特性、设计策略和应用进行了系统的综述。sp 和 sp 杂化碳、高电导率、直接带隙和高本征载流子迁移率是 GDY 作为一种有竞争力的催化剂载体的关键特性。水热法(或溶剂热法)、GDY 原位生长和电化学沉积是常用的将催化剂负载到 GDY 载体上的方法。在 GDY 负载光催化剂的应用中,GDY 主要作为电子或空穴传输材料。对于电催化析氢反应,GDY 的独特电子结构和高电导率可以促进电子转移和水分解动力学。本文的综述预计将为 GDY 负载催化剂的设计及其应用提供有意义的见解和指导。