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负载型单原子活性位点的均匀性促进选择性催化转化

Homogeneity of Supported Single-Atom Active Sites Boosting the Selective Catalytic Transformations.

作者信息

Shi Yujie, Zhou Yuwei, Lou Yang, Chen Zupeng, Xiong Haifeng, Zhu Yongfa

机构信息

Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi, Jiangsu, 214122, P. R. China.

International Joint Research Center for Photoresponsive Molecules and Materials, Jiangnan University, Wuxi, Jiangsu, 214122, P. R. China.

出版信息

Adv Sci (Weinh). 2022 Aug;9(24):e2201520. doi: 10.1002/advs.202201520. Epub 2022 Jul 9.

Abstract

Selective conversion of specific functional groups to desired products is highly important but still challenging in industrial catalytic processes. The adsorption state of surface species is the key factor in modulating the conversion of functional groups, which is correspondingly determined by the uniformity of active sites. However, the non-identical number of metal atoms, geometric shape, and morphology of conventional nanometer-sized metal particles/clusters normally lead to the non-uniform active sites with diverse geometric configurations and local coordination environments, which causes the distinct adsorption states of surface species. Hence, it is highly desired to modulate the homogeneity of the active sites so that the catalytic transformations can be better confined to the desired direction. In this review, the construction strategies and characterization techniques of the uniform active sites that are atomically dispersed on various supports are examined. In particular, their unique behavior in boosting the catalytic performance in various chemical transformations is discussed, including selective hydrogenation, selective oxidation, Suzuki coupling, and other catalytic reactions. In addition, the dynamic evolution of the active sites under reaction conditions and the industrial utilization of the single-atom catalysts are highlighted. Finally, the current challenges and frontiers are identified, and the perspectives on this flourishing field is provided.

摘要

在工业催化过程中,将特定官能团选择性转化为所需产物非常重要,但仍具有挑战性。表面物种的吸附状态是调节官能团转化的关键因素,而这又相应地取决于活性位点的均匀性。然而,传统纳米尺寸金属颗粒/团簇中金属原子数量、几何形状和形态各不相同,通常会导致活性位点不均匀,具有不同的几何构型和局部配位环境,这使得表面物种的吸附状态不同。因此,非常需要调节活性位点的均匀性,以便催化转化能够更好地局限于所需方向。在这篇综述中,研究了原子分散在各种载体上的均匀活性位点的构建策略和表征技术。特别讨论了它们在促进各种化学转化中的催化性能方面的独特行为,包括选择性氢化、选择性氧化、铃木耦合和其他催化反应。此外,还强调了反应条件下活性位点的动态演变以及单原子催化剂的工业应用。最后,确定了当前的挑战和前沿领域,并对这个蓬勃发展的领域提供了展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8128/9404403/e0cded76e00a/ADVS-9-2201520-g003.jpg

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