Catalytic Processes for Chemical Conversion of Carbon Dioxide into Cyclic Carbonates and Polycarbonates~!2008-03-31~!2008-04-14~!2008-06-10~!

Chengxia Miao, Jinquan Wang, Liang‐Nian He
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引用次数: 3

Abstract

Chemical fixation of CO2 has received much attention because CO2 is the most inexpensive and renewable carbon resource from the viewpoint of green chemistry and atom economy. The kinetic and thermodynamic stability of CO2 molecule presents significant challenges in designing efficient chemical transformations based on this potential feedstock. Currently, cyclic carbonates and polycarbonates are both valuable products, and the coupling of CO2 and epoxides is one of the most promising and eco-friendly methods for chemical conversion of CO2 into cyclic carbonates and/or polycarbonates. In this review, we will mainly discuss the synthesis of polycarbonates or cyclic carbonates catalyzed by metalsalen complexes through adjusting the architecture of the ligands and optimizing reaction conditions, such as temperature, pressure, co-catalysts, epoxide concentration. Furthermore, the recent progress for the synthesis of cyclic carbonates via the coupling reactions of epoxides and CO2 mediated by both homogeneous and heterogeneous catalysts is particularly reviewed.
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二氧化碳化学转化为环状碳酸盐和聚碳酸酯的催化过程
从绿色化学和原子经济的角度来看,二氧化碳是最廉价和可再生的碳资源,因此二氧化碳的化学固定受到了广泛的关注。二氧化碳分子的动力学和热力学稳定性对基于这种潜在原料设计有效的化学转化提出了重大挑战。目前,环碳酸盐和聚碳酸酯都是有价值的产品,而二氧化碳与环氧化物的偶联是将二氧化碳化学转化为环碳酸盐和/或聚碳酸酯的最有前途和最环保的方法之一。本文主要通过调整配体结构和优化反应条件,如温度、压力、助催化剂、环氧化物浓度等,对金属salen配合物催化合成聚碳酸酯或环碳酸酯进行了综述。综述了均相和非均相催化剂催化环氧化物与CO2偶联反应合成环状碳酸盐的最新进展。
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