刘方旺,高庆平,步红红,张佳佳,韩 艺,江津河.化学通报,2023,86(10):1188-1198.
均相催化体系对CO2与环氧化物耦合反应的研究进展
Research advance of homogeneous catalytic system for coupling reaction between CO2 with epoxides
投稿时间:2023-03-16  修订日期:2023-04-12
DOI:
中文关键词:  二氧化碳  均相催化体系  环状碳酸酯  耦合反应
英文关键词:Carbon  dioxide, Homogeneous  catalytic system, Cyclic  carbonate, Coupling  reaction
基金项目:国家自然科学基金项目(51541205);潍坊市科学技术发展计划项目(2022GX020)
作者单位E-mail
刘方旺* 潍坊职业学院化学工程学院 环渤海绿色化工应用技术协同创新中心 潍坊 liufangwang@sdwfvc.edu.cn 
高庆平 潍坊职业学院化学工程学院 环渤海绿色化工应用技术协同创新中心 潍坊  
步红红 潍坊职业学院化学工程学院 环渤海绿色化工应用技术协同创新中心 潍坊  
张佳佳 潍坊职业学院化学工程学院 环渤海绿色化工应用技术协同创新中心 潍坊  
韩 艺 潍坊职业学院化学工程学院 环渤海绿色化工应用技术协同创新中心 潍坊  
江津河 潍坊学院化学化工与环境工程学院 潍坊  
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中文摘要:
      二氧化碳(CO2)是造成温室效应的主要因素,同时也是集储量丰富、无毒和可再生等优点的C1资源。其与环氧化物的耦合反应具有高的原子经济性,产物环状碳酸酯作为高极性、低挥发性和良好生物降解性溶剂,可广泛应用于萃取剂、医药中间体和聚合物单体等研究方向。本文首先对CO2与环氧化物耦合反应发生的机理进行了分析,然后鉴于均相催化体系易制备、高活性等优点,重点从设计思路、催化参数、催化效率等方面,系统综述了催化该耦合反应的不同均相催化体系。最后,总结了为实现均相催化体系可长久发展所必须逾越的阻碍和后续研究方向,希望能够为探索新型、高催化性能的催化体系提供一定的参考价值。
英文摘要:
      Carbon dioxide (CO2) is the main factor causing the greenhouse effect, and it is also a C1 resource with the advantage of abundant reserves, non-toxic and renewable, etc. Its coupling reaction with epoxides has high atomic economy, and the product cyclic carbonate as a solvent with high polarity, low volatility and good biodegradability, it can be widely used in the research of extractants, pharmaceutical intermediates and polymer monomers, etc. In this paper, the mechanism of coupling reaction between CO2 with epoxides is firstly analyzed, and in view of the advantages of homogeneous catalytic system such as easy preparation and high activity, the different homogeneous catalytic systems that catalyze the coupling reaction were systematically reviewed from the aspects of design ideas, catalytic parameters and catalytic efficiency. Finally, the obstacles that must be overcome and follow-up research direction are summarized for the sustainable development of homogeneous catalytic system, which hope to provide certain reference value for exploring new catalytic systems with high catalytic performance.
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