Wang Ligang, Liu Huan, Zhuang Jiahao, Wang Dingsheng
Department of Chemistry Tsinghua University Beijing 100084 China.
Small Sci. 2022 Oct 13;2(11):2200036. doi: 10.1002/smsc.202200036. eCollection 2022 Nov.
The emergence of nanomaterials (NMs) has made everyone more aware of the close relationship between the size and performance of materials. Especially, the catalytic properties of materials may change dramatically when the macroscopic size of matter goes from bulk to nanometer to atomic level. It is very firmly believed that "Small size determines macroproperties, contains big science." Therefore, as chemists hope, it is very essential to rationally tune and characterize the size of materials and deeply understand the relationship between macroscopic catalytic properties and small structures. Herein, the recent progress in both multi-scale materials from nanoscale, sub-nano, clusters to atomic scale for various catalytic reactions is focused. Specifically, the catalytic reaction on the microstructures and the relationship between the small scale and big science are comprehensively summarized and discussed. This review systematically spans dimensions to reveal the catalytic performances of materials at different scales with a unique effect. This is crucial for rationally understanding the composition of materials and exploring their catalytic activity. Current opportunities, future challenges, and outlooks for the application of multiscale materials (NMs, sub-nano, cluster, and atomically dispersed materials) in catalysis, energy and environmental protection, etc. are summarized and outlined.
纳米材料(NMs)的出现让每个人都更加意识到材料的尺寸与性能之间的紧密关系。特别是,当物质的宏观尺寸从块状变为纳米级再到原子级时,材料的催化性能可能会发生巨大变化。人们坚信“小尺寸决定宏观性质,蕴含大科学”。因此,正如化学家所期望的那样,合理调控和表征材料的尺寸,并深入理解宏观催化性能与微观结构之间的关系至关重要。在此,重点关注了从纳米尺度、亚纳米尺度、团簇到原子尺度的多尺度材料在各种催化反应方面的最新进展。具体而言,全面总结并讨论了微观结构上的催化反应以及小尺度与大科学之间的关系。本综述系统地跨越多个维度,以独特的视角揭示不同尺度材料的催化性能。这对于合理理解材料的组成并探索其催化活性至关重要。总结并概述了多尺度材料(纳米材料、亚纳米材料、团簇和原子分散材料)在催化、能源和环境保护等领域应用的当前机遇、未来挑战及展望。