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金属有机骨架在多相催化中的潜在应用:氢键供体和单原子催化的案例研究。

Potential Utilization of Metal-Organic Frameworks in Heterogeneous Catalysis: A Case Study of Hydrogen-Bond Donating and Single-Site Catalysis.

机构信息

School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram, Kerala, 695551, India.

出版信息

Chem Asian J. 2019 Dec 2;14(23):4087-4102. doi: 10.1002/asia.201900823. Epub 2019 Oct 25.

Abstract

Crystalline solid materials are platforms for the development of effective catalysts and have shown vast benefits at the frontiers between homogeneous and heterogeneous catalysts. Typically, these crystalline solid catalysts outperformed their homogeneous analogs due to their high stability, selectivity, better catalytic activity, reusability and recyclability in catalysis applications. This point of view, comprising significant features of a new class of porous crystalline materials termed as metal-organic frameworks (MOFs) engendered the attractive pathway to synthesize functionalized heterogeneous MOF catalysts. The present review includes the recent research progress in developing both hydrogen-bond donating (HBD) MOF catalysts and MOF-supported single-site catalysts (MSSCs). The first part deals with the novel designs of urea-, thiourea- and squaramide-containing MOF catalysts and study of their crucial role in HBD catalysis. In the second part, we discuss the important classification of MSSCs with existing examples and their use in desired catalytic reactions. In addition, we describe the relative catalytic efficiency of these MSSCs with their homogeneous and similarly reported analogs. The precise knowledge of discussed heterogeneous MOF catalysts in this review may open the door for new research advances in the field of MOF catalysis.

摘要

晶态固体材料是开发有效催化剂的平台,在均相和多相催化剂之间的前沿领域显示出巨大的优势。通常,这些晶态固体催化剂由于其在催化应用中的高稳定性、选择性、更好的催化活性、可重复使用性和可回收性,优于其均相类似物。这一观点包含了一类新的多孔晶体材料的显著特征,称为金属-有机框架(MOFs),为合成功能化多相 MOF 催化剂提供了有吸引力的途径。本综述包括开发氢键供体(HBD)MOF 催化剂和 MOF 负载的单原子催化剂(MSSCs)的最新研究进展。第一部分涉及含脲、硫脲和琥酰胺的 MOF 催化剂的新颖设计及其在 HBD 催化中的关键作用的研究。在第二部分中,我们讨论了 MSSCs 的重要分类及其在所需催化反应中的应用。此外,我们还描述了这些 MSSCs 与其均相和类似报道的类似物的相对催化效率。本综述中讨论的这些多相 MOF 催化剂的精确知识可能为 MOF 催化领域的新研究进展开辟道路。

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