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异山梨醇作为一种可再生平台化学品,在多种应用中具有广阔的前景——未来如何?

Isosorbide as a renewable platform chemical for versatile applications--quo vadis?

机构信息

Institut für Technische und Makromolekulare Chemie, RWTH Aachen University, Aachen, Germany.

出版信息

ChemSusChem. 2012 Jan 9;5(1):167-76. doi: 10.1002/cssc.201100580. Epub 2011 Dec 30.

Abstract

Isosorbide is a platform chemical of considerable importance for the future replacement of fossil resource-based products. Applications as monomers and building blocks for new polymers and functional materials, new organic solvents, for medical and pharmaceutical applications, and even as fuels or fuel additives are conceivable. The conversion of isosorbide to valuable derivatives by functionalization or substitution of the hydroxyl groups is difficult because of the different configurations of the 2- and 5-positions and the resulting different reactivity and steric hindrance of the two hydroxyl groups. Although a substantial amount of work has been published using exclusively the endo or exo derivatives isomannide and isoidide, respectively, as starting material, a considerable effort is still necessary to transfer and adapt these methods for the efficient conversion of isosorbide. This Minireview deals with all aspects of isosorbide chemistry, which includes its production by catalytic processes, special properties, and chemical transformations for its utilization in biogenic polymers and other applications of interest.

摘要

异山梨醇是一种具有重要意义的平台化学品,可用于替代未来的基于化石资源的产品。它可以作为单体和构建块用于新型聚合物和功能材料、新型有机溶剂、医药和制药应用,甚至可以作为燃料或燃料添加剂。由于 2-位和 5-位的不同构型以及由此产生的两个羟基的不同反应性和空间位阻,异山梨醇通过官能团化或取代羟基转化为有价值的衍生物是困难的。尽管已经发表了大量使用分别作为起始原料的内型或外型异甘露醇和异伊里德的衍生方法,但仍需要相当大的努力来转移和适应这些方法,以实现异山梨醇的高效转化。这篇综述文章涉及异山梨醇化学的各个方面,包括其通过催化过程的生产、特殊性质以及用于生物基聚合物和其他感兴趣的应用的化学转化。

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