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废物利用:可再生资源的可持续有机催化剂。

Valorization of Waste: Sustainable Organocatalysts from Renewable Resources.

机构信息

Dipartimento di Chimica e Biologia, University of Salerno, Via Giovanni Paolo II, 84084, Fisciano, Italy.

出版信息

ChemSusChem. 2020 Feb 7;13(3):439-468. doi: 10.1002/cssc.201902500. Epub 2019 Nov 22.

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).

摘要

我们的社会面临的最大挑战之一是,在开发高效、复杂的化学工艺的同时,要兼顾到地球资源有限且对污染的吸收能力有限这一事实。有机催化使许多问题在开发复杂但污染较小的工艺过程中得到了解决。然而,减少浪费也意味着要有效利用原材料和可再生资源。废生物质是传统石油化工生产的替代物,是生产化学品和高附加值有机催化剂的极具吸引力的可再生资源。本文介绍了利用可再生生物质原料合成有机催化剂的最新进展。举例说明了它们在合成方法中的应用,包括在无溶剂条件下或在环保反应介质中进行的多组分反应,以及对有机催化剂的回收和再利用。本文还记录了一些证明这些促进剂在不对称合成中潜力的先驱性实例。特别是,这篇综述涵盖了使用 1)来源于废生物聚合物的杂化和均相有机催化剂的例子,如壳聚糖、藻酸和纤维素;2)可再生平台分子,如左旋葡聚糖酮、异山梨醇、甘露糖、D-葡糖胺和卵磷脂;3)萜烯和松香,如蒎烷、异甜菊醇和松香酸;以及 4)天然蛋白质(明胶、牛筋、丝素蛋白)的例子。

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