Shi Quanquan, Qin Zhaoxian, Sharma Sachil, Li Gao
College of Science, College of Material Science and Art Design, Inner Mongolia Agricultural University, Hohhot, 010018, China.
State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, China.
Chem Rec. 2021 Apr;21(4):879-892. doi: 10.1002/tcr.202100001. Epub 2021 Mar 11.
The feasibility to synthesize the ligand-protected atomically precise nanoclusters with various compositions in sub-nanometer range (≤2 nm) and the determination of their structures is an important step in long-pursuit of well-defined heterogeneous catalysis. Such types of precise catalysts provide an opportunity to understand the fundamentals of catalysis better in terms of: 1) activity and selectivity by metal-core and metal-ligand interface, 2) size-dependent activity, 3) reaction mechanism and 4) active-site identification and activation. It motivated us to develop the novel metal nanoclusters with precise structures as the new catalytic systems, which led to the several significant findings on above mentioned points. We consider that with this gained knowledge, the future research is expected to bring more exciting advancement in deep understanding of the reaction mechanism, specific-site identification and tailoring of catalytic active sites at atomic level.
在亚纳米范围(≤2 nm)内合成具有各种组成的配体保护的原子精确纳米团簇及其结构测定,是长期追求明确的多相催化过程中的重要一步。这类精确的催化剂提供了一个机会,以便从以下几个方面更好地理解催化的基本原理:1)金属核与金属配体界面的活性和选择性,2)尺寸依赖性活性,3)反应机理,以及4)活性位点的识别与活化。这促使我们开发具有精确结构的新型金属纳米团簇作为新的催化体系,从而在上述几点上取得了几项重要发现。我们认为,有了这些已获得的知识,未来的研究有望在深入理解反应机理、特定位点识别以及在原子水平上定制催化活性位点方面带来更令人兴奋的进展。