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    Section: Coatings, Inks, and Related

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    Sunlight-Induced Self-Healing of a Microcapsule-Type Protective Coating

    Young-Kyu Song , Ye-Hyun Jo , Ye-Ji Lim , Sung-

    Youl Cho , Hwan-Chul Yu , Byung-Cheol Ryu ,

    Sang-In Lee , and Chan-Moon Chung *Department of Chemistry, Yonsei University, Wonju,

    Gangwon-do 220-710, KoreaKorea Conformity Laboratory, 1276 Jisa-dong,

    Kangseo-ku, Busan, 618-230, Korea

    ACS Appl. Mater. Interfaces, 2013, 5(4), pp 13781384

    DOI: 10.1021/am302728m

    Publication Date (Web): February 1, 2013

    Copyright 2013 American Chemical Society

    *E-mail: [email protected] .

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    Hwan-Chul Yu

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    Photopolymerization behavior of a methacryloxypropyl-terminated polydimethylsiloxane

    (MAT-PDMS) healing agent was investigated in the presence of benzoin isobutyl ether (BIE)

    photoinitiator by Fourier transform infrared (FT-IR) spectroscopy. MAT-PDMS and BIE were

    microencapsulated with urea-formaldehyde polymer. The surface and shell morphology of the

    microcapsules was investigated by scanning electron microscopy (SEM). Mean diameter andsize distribution of the microcapsules could be controlled by agitation rate. A coating matrix

    formulation was prepared by solgel reaction of tetraethyl orthosilicate (TEOS) in the

    presence of a polysiloxane and by subsequent addition of an adhesion promoter. The

    formulation and microcapsules were mixed to give a self-healing coating formulation, which

    was then sprayed to surface of cellulose-fiber-reinforced-cement (CRC) board or mortar.

    Contact angle measurements showed that both the polymerized MAT-PDMS and the prepared

    coating matrix are hydrophobic, and the coating matrix has good wettability with MAT-

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    History

    Published In I ssue

    February 27, 2013

    Article ASAPFebruary 13, 2013

    Just Accepted Manuscript

    February 01, 2013

    Received: November 16, 2012

    Accepted: February 01, 2013

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    ICP10201100-36 | Copyright 2013 American Chemical Society

    PDMS. It was confirmed by optical microscopy and SEM that, when the self-healing coating is

    damaged, the healing agent is released from ruptured microcapsules and fills the damaged

    region. The self-healing coating was evaluated as protective coating for mortar, and it was

    demonstrated by water permeability and chloride ion penetration tests that our system has

    sunlight-induced self-healing capability. Our self-healing coating is the first example of

    capsule-type photoinduced self-healing system, and offers the advantages of catalyst-free,

    environmentally friendly, inexpensive, practical healing.

    Keywords: photoinduced self-healing; capsule type ; protective coating for concrete ;

    microencapsulation

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