The transfer and amplification of cyanostilbene molecular function to advanced flexible optical paints through self-crosslinkable side-chain liquid crystal polysiloxanes

Authors
Koo, JahyeonJang, JunhwaLim, Seok-InOh, MintaekLee, Kyung MinMcConney, Michael E.De Sio, LucianoKim, Dae-YoonJeong, Kwang-Un
Issue Date
2021-05-01
Publisher
ROYAL SOC CHEMISTRY
Citation
MATERIALS HORIZONS, v.8, no.5, pp.1561 - 1569
Abstract
A self-crosslinkable side-chain liquid crystal polysiloxane containing cyanostilbene (Si-CSM) was newly synthesized for the development of a new generation of flexible optical paints. The photoisomerization of the cyanostilbene moiety at the molecular level was transferred and amplified to the phase transition of Si-CSM, resulting in changes in the macroscopic optical properties of the Si-CSM thin film. The self-crosslinking reaction between Si-H groups in the Si-CSM polymer backbone caused the self-crosslinked Si-CSM thin film to be very elastic and both thermally and chemically stable. Therefore, the self-crosslinked Si-CSM thin film endured stretching and bending deformations under relatively harsh conditions. In addition, the uniaxially oriented and self-crosslinked Si-CSM thin film generated linearly polarized light emission. Polarization-dependent and photopatternable secret coatings were fabricated via a spontaneous self-crosslinking reaction after coating the Si-CSM paint and irradiating ultraviolet (UV) light through a photomask. This newly developed flexible optical Si-CSM paint can be applied in next-generation optical coatings.
Keywords
PHASE-TRANSITION; PHOTOPHYSICAL PROPERTIES; EMISSION; POLYMERS; PHOTOISOMERIZATION; ELASTOMERS; BEHAVIORS; POLARIZER; PHASE-TRANSITION; PHOTOPHYSICAL PROPERTIES; EMISSION; POLYMERS; PHOTOISOMERIZATION; ELASTOMERS; BEHAVIORS; POLARIZER; 유연신축기재; 선형발광재료; 액정성고분자; 광학용페인트
ISSN
2051-6347
URI
https://pubs.kist.re.kr/handle/201004/117006
DOI
10.1039/d1mh00004g
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KIST Article > 2021
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