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完全共轭梯形聚合物。

Fully conjugated ladder polymers.

作者信息

Lee Jongbok, Kalin Alexander J, Yuan Tianyu, Al-Hashimi Mohammed, Fang Lei

机构信息

Department of Chemistry , Texas A&M University , 3255 TAMU , College Station , TX 77843 , USA . Email:

Materials Science & Engineering Department , Texas A&M University , 3003 TAMU , College Station , TX 77843 , USA.

出版信息

Chem Sci. 2017 Apr 1;8(4):2503-2521. doi: 10.1039/c7sc00154a. Epub 2017 Feb 17.

Abstract

Fully conjugated ladder polymers (cLPs), in which all the backbone units on the polymer main-chain are π-conjugated and fused, have attracted great interest owing to their intriguing properties, remarkable chemical and thermal stability, and potential suitability as functional organic materials. The synthesis of cLPs can be, in general, achieved by two main strategies: single-step ladderization and post-polymerization ladderization. Although a variety of synthetic methods have been developed, the chemistry of cLPs must contend with structural defects and low solubility that prevents complete control over synthesis and structural characterization. Despite these challenges, cLPs have been used for a wide range of applications such as organic light emitting diodes (OLEDs) and organic field effect transistors (OFETs), paralleling developments in processing methods. In this perspective, we discuss the background of historical syntheses including the most recent synthetic approaches, challenges related to the synthesis and structural characterization of well-defined cLPs with minimum levels of structural defects, cLPs' unique properties, and wide range of applications. In addition, we propose outlooks to overcome the challenges limiting the synthesis, analysis, and processing of cLPs in order to fully unlock the potential of this intriguing class of organic materials.

摘要

全共轭梯形聚合物(cLPs),其聚合物主链上的所有主链单元都是π共轭且稠合的,由于其引人入胜的性质、卓越的化学和热稳定性以及作为功能性有机材料的潜在适用性而备受关注。一般来说,cLPs的合成可以通过两种主要策略实现:一步梯形化和后聚合梯形化。尽管已经开发了多种合成方法,但cLPs的化学性质必须应对结构缺陷和低溶解性问题,这会妨碍对合成和结构表征的完全控制。尽管存在这些挑战,但随着加工方法的发展,cLPs已被用于广泛的应用,如有机发光二极管(OLED)和有机场效应晶体管(OFET)。从这个角度出发,我们讨论了历史合成的背景,包括最新的合成方法、与合成具有最低结构缺陷水平的明确cLPs以及cLPs的独特性质和广泛应用相关的合成和结构表征挑战。此外,我们提出了克服限制cLPs合成、分析和加工的挑战的展望,以便充分释放这类有趣的有机材料的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0860/5431637/973803056130/c7sc00154a-f1.jpg

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