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发色团的多组分合成——功能性π体系的一锅法

Multicomponent synthesis of chromophores - The one-pot approach to functional π-systems.

作者信息

Brandner Larissa, Müller Thomas J J

机构信息

Institut für Organische Chemie und Makromolekulare Chemie, Heinrich-Heine-Universität Düsseldorf, Düsseldorf, Germany.

出版信息

Front Chem. 2023 Mar 17;11:1124209. doi: 10.3389/fchem.2023.1124209. eCollection 2023.

Abstract

Multicomponent reactions, conducted in a domino, sequential or consecutive fashion, have not only considerably enhanced synthetic efficiency as one-pot methodology, but they have also become an enabling tool for interdisciplinary research. The highly diversity-oriented nature of the synthetic concept allows accessing huge structural and functional space. Already some decades ago this has been recognized for life sciences, in particular, lead finding and exploration in pharma and agricultural chemistry. The quest for novel functional materials has also opened the field for diversity-oriented syntheses of functional π-systems, i.e. dyes for photonic and electronic applications based on their electronic properties. This review summarizes recent developments in MCR syntheses of functional chromophores highlighting syntheses following either the framework forming scaffold approach by establishing connectivity between chromophores or the chromogenic chromophore approach by formation of chromophore of interest. Both approaches warrant rapid access to molecular functional π-systems, i.e. chromophores, fluorophores, and electrophores for various applications.

摘要

以多米诺、连续或顺序方式进行的多组分反应,不仅作为一锅法显著提高了合成效率,而且已成为跨学科研究的一种有力工具。合成概念的高度多样性导向性质允许进入巨大的结构和功能空间。几十年前,生命科学领域就已经认识到了这一点,特别是在制药和农业化学中的先导化合物发现和探索方面。对新型功能材料的追求也为基于功能π-体系的多样性导向合成开辟了领域,即基于其电子性质用于光子和电子应用的染料。本综述总结了功能发色团的多组分反应合成的最新进展,重点介绍了通过在发色团之间建立连接遵循框架形成支架方法或通过形成目标发色团的生色发色团方法的合成。这两种方法都保证了能够快速获得用于各种应用的分子功能π-体系,即发色团、荧光团和电泳体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e52/10065161/a7a8456d046c/FCHEM_fchem-2023-1124209_wc_sch1.jpg

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