Planar, Twisted, and Curved π-Extended Pyrrolo[3,2-b]Pyrroles: Recent Advances in Synthesis, Properties, and Applications

IF 2.7 4区 化学 Q1 CHEMISTRY, ORGANIC
Seyed Parsa Hashemian, Seyed Mohammad Arabi Zanjani, Younes Latifi, Mahdi Behraveshfar, Prof. Mohammad Bagher Teimouri
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引用次数: 0

Abstract

The structure of 1,4-dihydropyrrolo[3,2-b]pyrrole is among the most widely used heteropentalene scaffolds due to its significant capability to maintain desirable π-conjugation and favorable electronic properties through various post-synthesis reactions. As a distinguished feature, pyrrolo[3,2-b]pyrroles have the most electron density among this class of aromatic heterocycles due to the structure consisting of two fused pyrrole rings. Because of its highly electron-rich nature, this bicyclic fused heterocyclic core has been used as an electron donor moiety in the structure of many functional dyes. Also, the derivatives of this compound have significant applications in various fields, such as semiconductors and optoelectronics. Since 2013, when a facile and efficient three-component reaction was introduced to facilitate access to this bicyclic heterocycle, the synthesis of this compound has attracted considerable research interest. Given the substantial increase in research reports in this field since then, we decided to examine, in this review article, the studies that have extended the amount of π-expansion around the central core of 1,4-dihydropyrrolo[3,2-b]pyrroles through post-transformation reactions.

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平面、扭曲和弯曲π-扩展吡咯[3,2-b]:合成、性质和应用的最新进展
1,4-二氢吡咯[3,2-b]吡咯的结构是应用最广泛的杂戊二烯支架之一,因为它具有通过各种合成后反应保持良好的π共轭和良好的电子性质的能力。吡咯[3,2-b]是这类芳香杂环化合物中电子密度最高的,因为它是由两个融合的吡咯环组成的。由于其高度富电子的性质,这种双环融合杂环核在许多功能染料的结构中被用作电子给体。此外,该化合物的衍生物在半导体和光电子学等各个领域都有重要的应用。自2013年以来,一种简便高效的三组分反应被引入以方便获得该双环杂环,该化合物的合成引起了相当大的研究兴趣。鉴于此后该领域的研究报告大量增加,我们决定在这篇综述文章中考察那些通过转化后反应扩展1,4-二氢吡咯[3,2-b]吡咯中心核心周围π膨胀量的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.70
自引率
3.70%
发文量
372
期刊介绍: Organic chemistry is the fundamental science that stands at the heart of chemistry, biology, and materials science. Research in these areas is vigorous and truly international, with three major regions making almost equal contributions: America, Europe and Asia. Asia now has its own top international organic chemistry journal—the Asian Journal of Organic Chemistry (AsianJOC) The AsianJOC is designed to be a top-ranked international research journal and publishes primary research as well as critical secondary information from authors across the world. The journal covers organic chemistry in its entirety. Authors and readers come from academia, the chemical industry, and government laboratories.
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