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作 者:张金明[1] 陈韦韦[1] 丰晔[1] 武进[1] 何嘉松[1] 张军[1]
机构地区:[1]中国科学院化学研究所,工程塑料重点实验室,北京分子科学国家实验室,北京100190
出 处:《科学通报》2015年第16期1513-1521,共9页Chinese Science Bulletin
基 金:国家自然科学基金(51103167,21174151,51425307)资助
摘 要:纤维素衍生物的均相合成一直是纤维素领域的研究热点之一.近年来,能够高效溶解纤维素的非质子型溶剂——离子液体的出现,为纤维素均相衍生化提供了一个崭新的、多用途的平台.以离子液体为介质,几乎所有人们熟知的纤维素衍生物(酯、醚、接枝聚合物等)都已经被合成出来;同时,一些新型、功能性纤维素衍生物和合成新技术不断涌现,以及均相酯化工业化的初步探索、农业废弃物的高值利用等,这些研究极大地拓展了纤维素资源的应用领域,促进了纤维素科学的发展.本文综述了以离子液体为介质的纤维素均相衍生化研究的最新进展.Cellulose derivatives are important fine chemicals with a wide range of applications in modern industries, so that cellulose derivatization has been one of hot topics for a long time. However, the existence of numerous hydroxyls in cellulose also generates a well-developed intra- and inter-molecular hydrogen bonding network, thus natural cellulose is neither meltable nor soluble in conventional solvents. Until today, the preparation method for cellulose esters begins with a heterogeneous reaction between cellulose and a large excess of the acylation reagent in the presence of pyridine or sulfuric acid as the catalyst. These heterogeneous reactions cause some problems, such as uneven distribution of substituents, side reactions, time consumption and considerable degradation of cellulose. Homogeneous esterification of cellulose in appropriate media, the alternative procedure for heterogeneous process, has been one focus in cellulose chemistry. It not only provides opportunities to obtain the effective control of degree of substitution(DS), distribution and uniformity of the functional groups along cellulose chains, but also creates more options to induce novel and functional groups. Recently, the advent of ionic liquids that can dissolve cellulose provides a new and versatile platform for the efficient and homogeneous derivatization of cellulose. A variety of well-known, novel and functional cellulose esters have been successfully synthesized in ionic liquids. Meanwhile, development of esterification techniques, utilization of agricultural residues, and pilot scheme of up-scaling esterification in ionic liquids have been in progress continuously. This review summarizes the development in homogeneous synthesis of cellulose esters in ionic liquids published in the recent decade.
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