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拓展源自生物质的化学空间。

Expanding the biomass derived chemical space.

作者信息

Brun Nicolas, Hesemann Peter, Esposito Davide

机构信息

Institut Charles Gerhardt , UMR 5253 CNRS - Université de Montpellier - ENSCM , Place Eugène Bataillon , 34095 Montpellier cédex 05 , France.

Max-Planck-Institute of Colloids and Interfaces , 14424 Potsdam , Germany . Email:

出版信息

Chem Sci. 2017 Jul 1;8(7):4724-4738. doi: 10.1039/c7sc00936d. Epub 2017 Apr 24.

Abstract

Biorefinery aims at the conversion of biomass and renewable feedstocks into fuels and platform chemicals, in analogy to conventional oil refinery. In the past years, the scientific community has defined a number of primary building blocks that can be obtained by direct biomass decomposition. However, the large potential of this "renewable chemical space" to contribute to the generation of value added bio-active compounds and materials still remains unexplored. In general, biomass derived building blocks feature a diverse range of chemical functionalities. In order to be integrated into value-added compounds, they require additional functionalization and/or covalent modification thereby generating secondary building blocks. The latter can be thus regarded as functional components of bio-active molecules or materials and represent an expansion of the renewable chemical space. This perspective highlights the most recent developments and opportunities for the synthesis of secondary biomass derived building blocks and their application to the preparation of value added products.

摘要

生物炼制旨在将生物质和可再生原料转化为燃料和平台化学品,这类似于传统的石油炼制。在过去几年中,科学界已经定义了一些可以通过直接生物质分解获得的主要结构单元。然而,这个“可再生化学空间”在促进增值生物活性化合物和材料生成方面的巨大潜力仍未得到探索。一般来说,源自生物质的结构单元具有多种化学官能团。为了整合到增值化合物中,它们需要额外的官能化和/或共价修饰,从而生成二级结构单元。因此,后者可被视为生物活性分子或材料的功能成分,代表了可再生化学空间的扩展。这一观点突出了二级生物质衍生结构单元合成的最新进展和机遇,以及它们在增值产品制备中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d378/5603961/7d9edf173369/c7sc00936d-s1.jpg

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