Zheng Long, Xu Lei, Gu Ping, Chen Ye
Department of Chemistry, The Chinese University of Hong Kong, Hong Kong, China.
Nanoscale. 2024 Apr 25;16(16):7841-7861. doi: 10.1039/d4nr00561a.
Noble metal-based nanomaterials possess outstanding catalytic properties in various chemical reactions. However, the increasing cost of noble metals severely hinders their large-scale applications. A cost-effective strategy is incorporating noble metals with light nonmetal elements (, H, B, C, N, P and S) to form noble metal-based nanocompounds, which can not only reduce the noble metal content, but also promote their catalytic performances by tuning their crystal lattices and introducing additional active sites. In this review, we present a concise overview of the recent advancements in the preparation and application of various kinds of noble metal-light nonmetal binary nanocompounds. Besides introducing synthetic strategies, we focus on the effects of introducing light nonmetal elements on the lattice structures of noble metals and highlight notable progress in the lattice strain engineering of representative core-shell nanostructures derived from these nanocompounds. In the meantime, the catalytic applications of the light element-incorporated noble metal-based nanomaterials are discussed. Finally, we discuss current challenges and future perspectives in the development of noble metal-nonmetal based nanomaterials.
基于贵金属的纳米材料在各种化学反应中具有出色的催化性能。然而,贵金属成本的不断上升严重阻碍了它们的大规模应用。一种具有成本效益的策略是将贵金属与轻非金属元素(如H、B、C、N、P和S)结合形成基于贵金属的纳米化合物,这不仅可以降低贵金属含量,还可以通过调整其晶格和引入额外的活性位点来提高其催化性能。在这篇综述中,我们简要概述了各种贵金属-轻非金属二元纳米化合物的制备和应用的最新进展。除了介绍合成策略外,我们重点关注引入轻非金属元素对贵金属晶格结构的影响,并突出这些纳米化合物衍生的代表性核壳纳米结构在晶格应变工程方面的显著进展。同时,讨论了掺入轻元素的基于贵金属的纳米材料的催化应用。最后,我们讨论了基于贵金属-非金属的纳米材料开发中的当前挑战和未来前景。