Wu Tong, Dong Chenlong, Sun Du, Huang Fuqiang
State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, P. R. China.
Nanoscale. 2021 Jan 28;13(3):1581-1595. doi: 10.1039/d0nr08009h.
Overall electrocatalytic water splitting can efficiently and sustainably produce clean hydrogen energy to alleviate the global energy crisis and environmental pollution. Two-dimensional (2D) materials with a unique band structure and surface conformation have emerged as promising electrocatalysts for the oxygen evolution reaction (OER) and hydrogen evolution reaction (HER). However, the intrinsic activities of primitive 2D materials in the catalytic process are still inferior to those of noble metal-based electrocatalysts. Surface defect engineering can modulate the electronic structure of 2D materials and induce new physicochemical properties, promoting their electrocatalytic performance. Herein, this minireview focuses on some recent developments in surface defect engineering, including the contribution of active sites, the derivation of the heterogeneous interface, and the anchoring of active substances, which provides an effective way to further optimize 2D electrocatalysts for water splitting. Furthermore, the typical morphological characteristics, catalytic activity, stability and catalytic mechanism of these 2D electrocatalysts are introduced. We believe that this minireview will help design more efficient and economical electrocatalysts for overall water splitting.
整体电催化水分解能够高效且可持续地生产清洁氢能,以缓解全球能源危机和环境污染。具有独特能带结构和表面构象的二维(2D)材料已成为用于析氧反应(OER)和析氢反应(HER)的有前景的电催化剂。然而,原始二维材料在催化过程中的本征活性仍低于基于贵金属的电催化剂。表面缺陷工程可以调节二维材料的电子结构并诱导新的物理化学性质,从而提升其电催化性能。在此,本综述聚焦于表面缺陷工程的一些最新进展,包括活性位点的贡献、异质界面的衍生以及活性物质的锚定,这为进一步优化用于水分解的二维电催化剂提供了有效途径。此外,还介绍了这些二维电催化剂的典型形态特征、催化活性、稳定性及催化机理。我们相信,本综述将有助于设计出更高效、经济的用于整体水分解的电催化剂。