通过光激发诱导的协同自组装巧妙地调整聚合物凝胶中的超分子手性

IF 10.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Bingbing Yue, Yulong Shi, Fan Yang, Danfeng Ye, Jian Jin, Pilan Zhang, Shen Song, Yifei Xu, Hui Lin, Shihui Zhu, Liangliang Zhu
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引用次数: 0

摘要

虽然超分子手性调谐在具有小分子构建块的系统中是繁荣的,但这些系统缺乏结构强度,实际应用有限。相反,聚合物系统没有表现出这些缺点,但受到拓扑链纠缠的影响,这通常会导致大的动态障碍,从而限制了超分子手性的可调性。在此,我们报告了通过操纵化学计量学和利用光来改变光激发诱导的可聚集分子与高分子量聚l -乳酸之间的氢键交联,可以通过不同的方式实现聚合物凝胶体系的超分子手性调节。具体来说,检测系统的棉花效应可以通过改变它们的化学计量来负调谐,而正调谐可以通过光照射来实现。在去激励后,有时会自发地再次出现负棉花效应调谐。这种超分子手性调整伴随着流变性质调整,表明我们的策略可以克服聚合物链纠缠的限制。所提出的策略激发了对聚合物手性的精确控制的进一步研究,从而开发具有可变光学活性和模量的不对称材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smartly tuning supramolecular chirality in polymer gels via photoexcitation-induced cooperative self-assembly

Although supramolecular chirality tuning is prosperous in systems with small molecular building blocks, these systems lack structural strength and have limited practical applications. Conversely, polymer systems do not exhibit these drawbacks but suffer from topological chain entanglement, which often leads to large dynamic obstacles and therefore limits the tunability of supramolecular chirality. Herein, we report that by manipulating stoichiometry and employing light to alter the H-bond crosslinking between a photoexcitation-induced aggregatable molecule and high molecular weight poly(L-lactic acids), supramolecular chirality tuning of the polymer gel systems can be achieved in different ways through a cooperative self-assembly. Specifically, the Cotton effects of the examined systems can be negatively tuned by varying their stoichiometry, while positive tuning can be realized by photoirradiation. After deexcitation, negative Cotton effect tuning occurs again spontaneously in some cases. Such supramolecular chirality tuning is accompanied by rheological property tuning, demonstrating that our strategy can overcome polymer chain entanglement limitations. The proposed strategy inspires further works on the precise control of polymer chirality and, hence, development of asymmetric materials with changeable optical activity and modulus.

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来源期刊
Science China Chemistry
Science China Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
7.30%
发文量
3787
审稿时长
2.2 months
期刊介绍: Science China Chemistry, co-sponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China and published by Science China Press, publishes high-quality original research in both basic and applied chemistry. Indexed by Science Citation Index, it is a premier academic journal in the field. Categories of articles include: Highlights. Brief summaries and scholarly comments on recent research achievements in any field of chemistry. Perspectives. Concise reports on thelatest chemistry trends of interest to scientists worldwide, including discussions of research breakthroughs and interpretations of important science and funding policies. Reviews. In-depth summaries of representative results and achievements of the past 5–10 years in selected topics based on or closely related to the research expertise of the authors, providing a thorough assessment of the significance, current status, and future research directions of the field.
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