Suppressive Photochromism and Promotive Mechanochromism of Rhodamine Mechanophore by the Strategy of Poly(methyl acrylate)/Polyurethane Interpenetrating Polymer Network

光致变色 聚氨酯 材料科学 丙烯酸酯 聚合物 光异构化 高分子化学 罗丹明B 丙烯酸甲酯 罗丹明 光化学 化学工程 复合材料 有机化学 化学 共聚物 纳米技术 异构化 荧光 光催化 催化作用 工程类 物理 量子力学
作者
Xin Cheng,Huan Hu,Lijuan Bu,Yu Wu,Zhimin Ma,Zhiyong Ma,Zhiyong Ma,Zhiyong Ma
出处
期刊:ACS Macro Letters [American Chemical Society]
卷期号:13 (3): 308-314 被引量:23
标识
DOI:10.1021/acsmacrolett.3c00749
摘要

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 PMA2.8/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.
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