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现代环保有机合成中的可回收纳米结构化催化体系。

Recyclable nanostructured catalytic systems in modern environmentally friendly organic synthesis.

机构信息

A.N. Frumkin Institute of Physical Chemistry and Electrochemistry, 31, Leninskiy prosp., Moscow, 119991, Russia.

出版信息

Molecules. 2010 Jul 8;15(7):4792-814. doi: 10.3390/molecules15074792.

Abstract

Modern chemical synthesis makes heavy use of different types of catalytic systems: homogeneous, heterogeneous and nano-sized. The latter--nano-sized catalysts--have given rise in the 21st century to a rapidly developing area of research encompassing several prospects and opportunities for new technologies. Catalytic reactions ensure high regio- and stereoselectivity of chemical transformations, as well as better yields and milder reaction conditions. In recent years several novel catalytic systems were developed for selective formation of carbon-heteroatom and carbon-carbon bonds. This review presents the achievements of our team in our studies on various types of catalysts containing metal nanoparticles: palladium-containing diblock copolymer micelles; soluble palladium-containing polymers; metallides on a support; polymeric metal salts and oxides; and, in addition, metal-free organic catalysts based on soluble polymers acting as nanoreactors. Representative examples are given and discussed in light of possible applications to solve important problems in modern organic synthesis.

摘要

现代化学合成大量使用不同类型的催化体系

均相、多相和纳米级。后者——纳米级催化剂——在 21 世纪引发了一个快速发展的研究领域,涵盖了新技术的几个前景和机会。催化反应确保了化学转化的高区域和立体选择性,以及更好的产率和更温和的反应条件。近年来,为选择性形成碳-杂原子和碳-碳键,开发了几种新型催化体系。本综述介绍了我们团队在含有金属纳米粒子的各种类型催化剂研究方面的成果:含钯的两亲嵌段共聚物胶束;可溶性含钯聚合物;负载上的金属间化合物;聚合物金属盐和氧化物;此外,还介绍了基于可溶性聚合物作为纳米反应器的无金属有机催化剂。给出了代表性实例,并根据可能应用于解决现代有机合成中重要问题的角度进行了讨论。

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