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金属有机框架/多金属氧酸盐杂化物作为有机转化的催化剂。

MOF/POM hybrids as catalysts for organic transformations.

作者信息

Maru Ketan, Kalla Sarita, Jangir Ritambhara

机构信息

Sardar Vallabhbhai National Institute of Technology, Ichchanath, Surat-395 007, Gujarat, India.

出版信息

Dalton Trans. 2022 Aug 16;51(32):11952-11986. doi: 10.1039/d2dt01895k.

Abstract

Insertion of molecular metal oxides, polyoxometalates (POMs), into metal-organic frameworks (MOFs) opens up new research opportunities in various fields, particularly in catalysis. POM/MOF composites have strong acidity, oxygen-rich surface, and redox capacity due to typical characteristics of POMs and the large surface area, highly organized structures, tunable pore size, and shape are due to MOFs. Such hybrid materials have gained a lot of attention due to astonishing structural features, and hence have potential applications in organic catalysis, sorption and separation, proton conduction, magnetism, lithium-ion batteries, supercapacitors, electrochemistry, medicine, bio-fuel, and so on. The exceptional chemical and physical characteristics of POMOFs make them useful as catalysts in simple organic transformations with high capacity and selectivity. Here, the thorough catalytic study starts with a brief introduction related to POMs and MOFs, and is followed by the synthetic strategies and applications of these materials in several catalytic organic transformations. Furthermore, catalytic conversions like oxidation, condensation, esterification, and some other types of catalytic reactions including photocatalytic reactions are discussed in length with their plausible catalytic mechanisms. The disadvantages of the POMOFs and difficulties faced in the field have also been explored briefly from our perspectives.

摘要

将分子金属氧化物、多金属氧酸盐(POMs)插入金属有机框架(MOFs)中,为各个领域带来了新的研究机遇,尤其是在催化领域。由于POMs的典型特性,POM/MOF复合材料具有强酸性、富氧表面和氧化还原能力;而MOFs则赋予了复合材料大表面积、高度有序的结构、可调节的孔径和形状。这类杂化材料因其惊人的结构特征而备受关注,因此在有机催化、吸附与分离、质子传导、磁性、锂离子电池、超级电容器、电化学、医学、生物燃料等领域具有潜在应用。POMOFs卓越的化学和物理特性使其成为具有高活性和选择性的简单有机转化反应的优良催化剂。在此,深入的催化研究首先简要介绍与POMs和MOFs相关的内容,接着阐述这些材料的合成策略及其在几种催化有机转化反应中的应用。此外,还详细讨论了氧化、缩合、酯化等催化转化反应以及包括光催化反应在内的其他一些类型的催化反应及其可能的催化机理。我们也简要探讨了POMOFs的缺点以及该领域面临的困难。

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