Tang Min, Wang Yong
Center of Electron Microscopy and State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, China.
Materials Chemistry and Catalysis, Debye Institute for Nanomaterials Science, Utrecht University, 3584 CG, Utrecht, The Netherlands.
Chemistry. 2022 Jul 20;28(41):e202104519. doi: 10.1002/chem.202104519. Epub 2022 Jun 10.
Supported metal catalysts are important in many industrial reactions. It is reported that support materials are not always inert, and in some cases could even interact with metal nanoparticles (NPs) actively via various ways. In particular, the strong metal-support interaction (SMSI), referring to metal NPs covered by support materials, affects catalysis at the active sites on the metal NP surface, which can serve as a very effective method in tuning and improving catalytic performance. By tailoring the support materials or controlling the treatment processes, different kinds of SMSI, such as classical SMSI, oxidative SMSI, wet-chemistry SMSI, and adsorbate-mediated SMSI, can be achieved. This concept summarizes the general strategies to tune SMSI and discusses the key results. Moreover, a new proposal is presented to tailor SMSI by combining both the exposed facets of the support materials and external environments. Furthermore, the challenges faced at present are discussed and useful insights for future research concerning this topic are provided.
负载型金属催化剂在许多工业反应中都很重要。据报道,载体材料并非总是惰性的,在某些情况下甚至可以通过各种方式与金属纳米颗粒(NPs)发生积极相互作用。特别是,强金属-载体相互作用(SMSI),即指金属 NPs 被载体材料覆盖,会影响金属 NP 表面活性位点的催化作用,这可以作为调整和提高催化性能的一种非常有效的方法。通过定制载体材料或控制处理过程,可以实现不同类型的 SMSI,如经典 SMSI、氧化 SMSI、湿化学 SMSI 和吸附质介导的 SMSI。本文总结了调整 SMSI 的一般策略并讨论了关键结果。此外,还提出了一种通过结合载体材料的暴露面和外部环境来定制 SMSI 的新建议。此外,还讨论了目前面临的挑战,并为该主题的未来研究提供了有用的见解。