可再生资源
化学
生物量(生态学)
环境友好型
原材料
有机催化
绿色化学
松香
有机化学
生化工程
可再生能源
对映选择合成
催化作用
离子液体
工程类
生态学
海洋学
电气工程
生物
地质学
树脂酸
出处
期刊:Chemsuschem
[Wiley]
日期:2019-10-21
卷期号:13 (3): 439-468
被引量:41
标识
DOI:10.1002/cssc.201902500
摘要
Abstract One of the greatest challenges facing our society is to reconcile our need to develop efficient and sophisticated chemical processes with the limited resources of our planet and its restricted ability to adsorb pollution. Organocatalysis has allowed many issues to be addressed in the development of sophisticated, but less polluting, processes. However, minimizing waste also means an efficient utilization of raw and renewable materials. Waste biomass represents an alternative to conventional petroleum‐based chemical manufacturing and is a highly attractive renewable resource for the production of chemicals and high‐value‐added organocatalysts. Recent achievements in the use of renewable biomass feedstocks for the synthesis of organocatalysts are presented. Their application in synthetic methodologies, including multicomponent reactions, which are performed under solvent‐free conditions or in eco‐friendly reaction media, as well as recycling and reusing the organocatalysts, is illustrated. A few pioneering examples that demonstrate the potential of these promoters in asymmetric synthesis have also been documented. In particular, this review covers examples on the use of hetero‐ and homogeneous organocatalysts derived from 1) waste biopolymers, such as chitosan, alginic acid, and cellulose; ii) renewable platform molecules, such as levoglucosenone, isosorbide, mannose, d ‐glucosamine, and lecithin; 3) terpenes and rosin, such as pinane, isosteviol, and abietic acid; and iv) natural proteins (gelatin, bovine tendons, silk fibroin proteins).
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