Cheng Xin, Hu Huan, Bu Lijuan, Wu Yu, Ma Zhimin, Ma Zhiyong
Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing State Key Laboratory of Organic-Inorganic Composites, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
Chinese PLA Center for Disease Control and Prevention, Beijing 100071, China.
ACS Macro Lett. 2024 Mar 19;13(3):308-314. doi: 10.1021/acsmacrolett.3c00749. Epub 2024 Feb 19.
As molecular design and the structure-property relationships of photochemical molecules established in the literature serve as a convenient reference for mechanophore exploration, many typical mechanophores suffer undesired responses to UV light or even sunlight in bulk polymers. We developed a strategy of a poly(methyl acrylate)/polyurethane (PMA/PU) interpenetrating polymer network (IPN) to suppress the photochromic property of the mechanophore and promote its mechanochromic property. A widely used rhodamine mechanophore (Rh-2OH) was first incorporated into polyurethane (P1). Then P1 was swollen in methyl acrylate and photopolymerized to prepare a PMA/PU IPN (P2). Different from photo/force-responsive P1, P2 selectively responded to force because the low free volume in IPN greatly hinders photoisomerization of the rhodamine spirolactam, suggesting that a simple IPN strategy successfully resolves the giant problem of nonselective response to photo/force for photochromic mechanophores. Moreover, PMA/PU IPN enhanced the mechanical property, resulting in a higher mechanochemical activation ratio than PU, and the prestretching effect of PMA/PU IPN promoted the force sensitivity of rhodamine mechanophores significantly. We believe that the strategy can be applied to other mechanophores, promoting their application in more complicated environments.
由于文献中建立的光化学分子的分子设计及其结构-性质关系为机械发色团的探索提供了便利的参考,许多典型的机械发色团在本体聚合物中会对紫外线甚至阳光产生不期望的响应。我们开发了一种聚(丙烯酸甲酯)/聚氨酯(PMA/PU)互穿聚合物网络(IPN)策略,以抑制机械发色团的光致变色特性并促进其机械变色特性。首先将一种广泛使用的罗丹明机械发色团(Rh-2OH)引入聚氨酯(P1)中。然后将P1在丙烯酸甲酯中溶胀并进行光聚合,以制备PMA/PU IPN(P2)。与光/力响应性的P1不同,P2对力具有选择性响应,因为IPN中的低自由体积极大地阻碍了罗丹明螺内酰胺的光异构化,这表明简单的IPN策略成功解决了光致变色机械发色团对光/力的非选择性响应这一重大问题。此外,PMA/PU IPN增强了机械性能,导致其机械化学活化率高于PU,并且PMA/PU IPN的预拉伸效应显著提高了罗丹明机械发色团的力敏感性。我们相信该策略可以应用于其他机械发色团,促进它们在更复杂环境中的应用。