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A microcapsule-based reusable self-reporting system using a donor-acceptor Stenhouse adduct.
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.
Afiliação
  • Choi S; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Kim GE; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Bae H; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Choi SJ; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Jeong JE; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Kim JC; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Na H; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Jung H; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Jung YJ; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Lee SH; Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology Ulsan 44412 Republic of Korea hjung@krict.re.kr yjjung@krict.re.kr slee@krict.re.kr ypark@krict.re.kr.
  • Park YI; Department of Chemical & Biochemical Engineering, Dongguk University Seoul 04620 Republic of Korea.
RSC Adv ; 14(15): 10653-10661, 2024 Mar 26.
Article em En | MEDLINE | ID: mdl-38567327
ABSTRACT
Self-reporting systems automatically indicate damaged or corroded surfaces via 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.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2024 Tipo de documento: Article