基于杂环的动态功能材料的动态共价化学

IF 15.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Zeyu Ma, Siyu Pan, Yang Yang, Yuan Zeng, Bo Wang, Yen Wei, Lei Tao
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引用次数: 0

摘要

动态共价化学,使可重复使用和可降解的热固性聚合物,是解决全球塑料污染问题的一个很有前途的工具。动态共价化学虽然可以构建动态聚合物网络,但很少在聚合物中引入其他功能,这限制了动态功能材料的发展。在此,我们建立了基于杂环的动态共价化学,并证明了杂环二氢嘧啶-2(1H)-硫酮与缺电子烯烃之间的aza-Michael加成反应的可逆性。我们的方法产生了一种可降解的线性聚合物和可回收和自愈的交联聚合物,类似于传统的动态共价化学,但杂环赋予了聚合物优异的紫外线阻挡和高能蓝光阻挡能力,以及可调谐的荧光和磷光性质。这些是用普通的动态共价化学很难产生的。这一概念验证研究为基于杂环的动态反应提供了见解,并可能促进动态化学和动态功能材料的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Heterocycle-based dynamic covalent chemistry for dynamic functional materials

Heterocycle-based dynamic covalent chemistry for dynamic functional materials

Dynamic covalent chemistry, which renders reusable and degradable thermoset polymers, is a promising tool for solving the global problem of plastic pollution. Although dynamic covalent chemistry can construct dynamic polymer networks, it rarely introduces other functions into polymers, which limits the development of dynamic functional materials. Herein, we develop heterocycle-based dynamic covalent chemistry and demonstrate the reversibility of the aza-Michael addition reaction between functional heterocycle dihydropyrimidin-2(1H)-thione and electron-deficient olefins. Our method produces a degradable linear polymer and recyclable and self-healable crosslinked polymers similar to traditional dynamic covalent chemistry, but the heterocycles endow the polymer with excellent ultraviolet-blocking and high-energy blue light-blocking abilities, and tunable fluorescence and phosphorescence properties. These are difficult to create with ordinary dynamic covalent chemistry. This proof-of-concept study provides insights into heterocycle-based dynamic reactions, and may prompt the development of dynamic chemistry and dynamic functional materials.

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来源期刊
Nature Communications
Nature Communications Biological Science Disciplines-
CiteScore
24.90
自引率
2.40%
发文量
6928
审稿时长
3.7 months
期刊介绍: Nature Communications, an open-access journal, publishes high-quality research spanning all areas of the natural sciences. Papers featured in the journal showcase significant advances relevant to specialists in each respective field. With a 2-year impact factor of 16.6 (2022) and a median time of 8 days from submission to the first editorial decision, Nature Communications is committed to rapid dissemination of research findings. As a multidisciplinary journal, it welcomes contributions from biological, health, physical, chemical, Earth, social, mathematical, applied, and engineering sciences, aiming to highlight important breakthroughs within each domain.
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