School of Environmental and Chemical Engineering, Shanghai University, 99 Shangda Road, Shanghai 200444, P. R. China.
Langmuir. 2022 Oct 25;38(42):12739-12756. doi: 10.1021/acs.langmuir.2c01887. Epub 2022 Oct 17.
As an effective non-noble, molybdenum carbide (MoC: MoC or MoC) has attracted extensive attention and is regarded as a promising research area in the near future owing to its good biocompatibility, high stability, band gap adjustability, rich valence states, and excellent catalytic activity. This Perspective summarizes the recent progress and achievements for the molybdenum carbide-based catalysts. First, the crystal and band structures of molybdenum carbides are generally presented. Second, various modifying strategies for molybdenum carbides are outlined to enhance the photocatalytic performance, including doping engineering, vacancy engineering, morphology and structure engineering, and the establishment of molybdenum carbide-based composite catalysts. Finally, potential applications in the photocatalysis area of molybdenum carbide-based photocatalyst are generalized. Future development trends and perspective for this promising material are also discussed.
作为一种有效的非贵金属,碳化钼(MoC:MoC 或 Mo2C)具有良好的生物相容性、高稳定性、带隙可调性、丰富的价态和优异的催化活性,因此引起了广泛的关注,并被认为是未来极具前景的研究领域。本文综述了基于碳化钼的催化剂的最新进展和成果。首先,介绍了碳化钼的晶体和能带结构。其次,概述了各种用于增强光催化性能的碳化钼改性策略,包括掺杂工程、空位工程、形貌和结构工程以及构建基于碳化钼的复合催化剂。最后,概括了基于碳化钼的光催化剂在光催化领域的潜在应用。还讨论了这种有前途的材料未来的发展趋势和展望。