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一种基于微胶囊的可重复使用的自报告系统,该系统使用给体-受体型施滕豪斯加合物。

A microcapsule-based reusable self-reporting system using a donor-acceptor Stenhouse adduct.

作者信息

Choi Soonyoung, Kim Gyeong Eun, Bae Hyoungeun, Choi Su Jeong, Jeong Ji-Eun, Kim Jin Chul, Na Hanah, Jung Hyocheol, Jung Yu Jin, Lee Sang-Ho, Park Young Il

机构信息

Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea

Department of Chemical & Biochemical Engineering, Dongguk University Seoul 04620 Republic of Korea.

出版信息

RSC Adv. 2024 Apr 2;14(15):10653-10661. doi: 10.1039/d4ra00925h. eCollection 2024 Mar 26.

Abstract

Self-reporting systems automatically indicate damaged or corroded surfaces color changes or fluorescence. In this study, a novel reusable self-reporting system is developed by exploiting the reversibility of a donor-acceptor Stenhouse adduct (DASA). The synthesized DASA precursor exhibits a color change when damaged upon reaction with diethylamine, and returns to its colorless form upon irradiation with visible light. Microcapsules are synthesized with a core comprising styrene and the DASA precursor, along with a shell formed of urea and formaldehyde. The optimal particle size and shell thickness of the microcapsules are 225 μm and 0.17 μm, respectively. The DASA precursor-containing microcapsules are embedded in a PEG gel matrix with secondary amine groups. This coating system, initially colorless, exhibits a color change, becoming pink after being damaged by scratching due to the reaction between the DASA precursor released from ruptured microcapsules with the secondary amine groups of the PEG gel, thus demonstrating self-reporting characteristics. Furthermore, the colored surface is restored to its initial colorless state by irradiation with visible light for 1.5 hours, demonstrating the reusability of the self-reporting system.

摘要

自我报告系统能自动指示受损或腐蚀的表面、颜色变化或荧光。在本研究中,通过利用供体-受体施滕豪斯加合物(DASA)的可逆性,开发了一种新型的可重复使用的自我报告系统。合成的DASA前体在与二乙胺反应受损时会发生颜色变化,并在可见光照射下恢复为无色形式。微胶囊的合成采用苯乙烯和DASA前体作为核心,以及由尿素和甲醛形成的外壳。微胶囊的最佳粒径和壳厚度分别为225μm和0.17μm。含DASA前体的微胶囊被嵌入具有仲胺基团的PEG凝胶基质中。这种涂层系统最初是无色的,在被刮擦受损后会发生颜色变化,由于破裂微胶囊释放的DASA前体与PEG凝胶的仲胺基团发生反应而变成粉红色,从而展示出自我报告特性。此外,通过1.5小时的可见光照射,有色表面恢复到其初始无色状态,证明了自我报告系统的可重复使用性。

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