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Covalent Organic Frameworks: Promising Materials as Heterogeneous Catalysts for C-C Bond Formations

机译:共价有机框架:有希望的材料作为C-C键形成的多相催化剂

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摘要

Covalent organic frameworks (COFs) are defined as highly porous and crystalline polymers, constructed and connected via covalent bonds, extending in two- or three-dimension. Compared with other porous materials such as zeolite and active carbon, the versatile and alternative constituent elements, chemical bonding types and characteristics of ordered skeleton and pore, enable the rising large family of COFs more available to diverse applications including gas separation and storage, optoelectronics, proton conduction, energy storage and in particular, catalysis. As the representative candidate of next-generation catalysis materials, because of their large surface area, accessible and size-tunable open nano-pores, COFs materials are suitable for incorporating external useful active ingredients such as ligands, complexes, even metal nanoparticles deposition and substrate diffusion. These advantages make it capable to catalyze a variety of useful organic reactions such as important C-C bond formations. By appropriate pore-engineering in COFs materials, even enantioselective asymmetric C-C bond formations could be realized with excellent yield and ee value in much shorter reaction time compared with their monomer and oligomer analogues. This review will mainly introduce and discuss the paragon examples of COFs materials for application in C-C bond formation reactions for the organic synthetic purpose.
机译:共价有机骨架(COF)定义为高度多孔的结晶聚合物,通过共价键构造和连接,并以二维或三维方向延伸。与其他多孔材料(例如沸石和活性炭)相比,通用和替代的构成元素,化学键的类型以及有序骨架和孔的特性使不断增长的大型COF系列更加可用于多种应用,包括气体分离和存储,光电,质子传导,能量存储,尤其是催化。作为下一代催化材料的代表性候选者,由于它们的表面积大,易于接近且尺寸可调的开放式纳米孔,COFs材料适用于掺入外部有用的活性成分,例如配体,络合物,甚至是金属纳米颗粒沉积和基质扩散。这些优点使其能够催化多种有用的有机反应,例如重要的C-C键形成。通过在COFs材料中进行适当的孔工程设计,与它们的单体和低聚物类似物相比,即使在对映选择性不对称的C-C键形成中,也可以在短得多的反应时间内以优异的收率和ee值实现。本文将主要介绍和讨论用于有机合成目的C-C键形成反应的COFs材料的典型例子。

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