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由价格低廉且易于获得的构建模块合成的有机催化聚合物用于CO与环氧化物的环加成反应。

Organocatalytic Polymers from Affordable and Readily Available Building Blocks for the Cycloaddition of CO to Epoxides.

作者信息

Kessaratikoon Tanika, Theerathanagorn Tharinee, Crespy Daniel, D'Elia Valerio

机构信息

Department of Material Science and Engineering, School of Molecular Science and Engineering, Vidyasirimedhi Institute of Science and Technology (VISTEC), Payupnai, WangChan, Rayong 21210, Thailand.

出版信息

J Org Chem. 2023 Apr 21;88(8):4894-4924. doi: 10.1021/acs.joc.2c02447. Epub 2023 Jan 24.

Abstract

The catalytic cycloaddition of CO to epoxides to afford cyclic carbonates as useful monomers, intermediates, solvents, and additives is a continuously growing field of investigation as a way to carry out the atom-economic conversion of CO to value-added products. Metal-free organocatalytic compounds are attractive systems among various catalysts for such transformations because they are inexpensive, nontoxic, and readily available. Herein, we highlight and discuss key advances in the development of polymer-based organocatalytic materials that match these requirements of affordability and availability by considering their synthetic routes, the monomers, and the supports employed. The discussion is organized according to the number (monofunctional versus bifunctional materials) and type of catalytically active moieties, including both halide-based and halide-free systems. Two general synthetic approaches are identified based on the postsynthetic functionalization of polymeric supports or the copolymerization of monomers bearing catalytically active moieties. After a review of the material syntheses and catalytic activities, the chemical and structural features affecting catalytic performance are discussed. Based on such analysis, some strategies for the future design of affordable and readily available polymer-based organocatalysts with enhanced catalytic activity under mild conditions are considered.

摘要

通过将CO催化环加成到环氧化物上以制备环状碳酸酯(作为有用的单体、中间体、溶剂和添加剂),作为将CO原子经济转化为增值产品的一种方式,是一个不断发展的研究领域。在各种用于此类转化的催化剂中,无金属有机催化化合物是有吸引力的体系,因为它们价格低廉、无毒且易于获得。在此,我们通过考虑聚合物基有机催化材料的合成路线、单体和所用载体,突出并讨论了开发符合这些价格可承受性和可得性要求的聚合物基有机催化材料方面的关键进展。讨论根据催化活性部分的数量(单官能与双官能材料)和类型进行组织,包括基于卤化物和无卤化物体系。基于聚合物载体的后合成功能化或带有催化活性部分的单体的共聚,确定了两种一般的合成方法。在综述材料合成和催化活性之后,讨论了影响催化性能的化学和结构特征。基于此类分析,考虑了一些未来设计在温和条件下具有增强催化活性的价格可承受且易于获得的聚合物基有机催化剂的策略。

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