苯并barrelane聚合物的级联力学化学转化

IF 15.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Daniel C. Lee, Erica J. Flear, Rui Xu, Ke Zheng, Todd J. Martínez, Yan Xia
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引用次数: 0

摘要

设计和理解单个力响应分子(机械基团)的反应性一直是聚合物机械化学的中心课题。然而,我们设想,当某些分子结构沿着聚合物主链紧密耦合时,可能会出现单个分子所缺乏的新的机械化学反应性。本文中,我们描述了一种聚合物,它由苯二巴雷烷重复单元组成,通过主链烯烃连接,其中力诱导的键断裂触发自由基级联反应来改变聚合物的主链结构。尽管在苯并barrelane聚合物中缺乏弱共价键或显着的环应变,但它实现了与我们之前报道的由高度应变重复单元组成的聚ladderene系统相似程度的机械化学转化。相反,在沿主干彼此相距较远的苯并barrelane单元中没有观察到机械化学反应:barrelane的机械化学反应需要立即连接的barrelane单元。这项工作证明了通过在其他惰性个体单位之间创建合作化学途径来引发新反应的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cascade Mechanochemical Transformation of a Benzobarrelane Polymer

Cascade Mechanochemical Transformation of a Benzobarrelane Polymer
Designing and understanding the reactivity of individual force-responsive molecules, mechanophores, has been a central topic in polymer mechanochemistry. However, we envision that when certain molecular structures are closely coupled along a polymer backbone, new mechanochemical reactivity that is absent from individual molecules may arise. Herein, we describe a polymer consisting of benzobarrelane repeat units that are connected via backbone alkenes, where force-induced bond scission triggers a radical cascade reaction to transform the polymer backbone structure. Despite the lack of weak covalent bonds or significant ring strain in the benzobarrelane polymer, it achieved similar degrees of mechanochemical transformation as our previously reported polyladderene systems consisting of highly strained repeat units. In contrast, no mechanochemical reaction was observed in benzobarrelane units that are distant from one another along the backbone: the mechanochemistry of barrelane requires immediately connected barrelane units. This work demonstrates the possibility of eliciting novel reactivities by creating cooperative chemical pathways across otherwise inert individual units.
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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