• Title/Summary/Keyword: Photochromic device

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Chiral liquid crystals in photonic device applications

  • Gleeson, Helen F.;Yoon, Hyung-Guen;Roberts, Nicholas W.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08a
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    • pp.105-108
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    • 2007
  • Chiral liquid crystals exhibit band-gap structures responsive to electrical and optical fields, providing wide-ranging opportunities for photonics applications. We discuss three aspects of this technology: optics of chiral nematic devices and removal of pitch jumps; optical switching of chiral nematic materials; and using novel phases in photonic devices.

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Photo Stimulus Displacement Properties of Nano structure Organic Ultra Thin Films (나노구조 유기초박막의 광자격 변위특성)

  • Song, Jin-Won;Cho, Su-Young;Choi, Young-Il;Lee, Kyung-Sup
    • Proceedings of the KIEE Conference
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    • 2004.11a
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    • pp.209-211
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    • 2004
  • In the Langmuir-Boldgett(LB) technique, a monolayer on the water surface is transferred on to a substrate, which is raised and dipped through the surface, and one can obtain multilayers in which constituent molecules periodically are arranged in layer. The LB technique has attracted considerable interest in the fabrication of electrical and electronic device, e.g.. Many researchers have investigated the electrical properties of monolayer and multiplayer films. Dendrimers represent a new class of synthetic macromolecules sharacterized by a regularly branched treelike structure. Multiple branching yields a large number of chain ends, which distinguishes dendrimers from conventional starlike polymers and microgels. Azobenzene dendrimer is one of the dendritic macromolecules that includes the azo-group which exhibits a photochromic character. Due to the presence of the charge transfer part, the azo-group, and having a rod-shaped structure, these compounds are expected to have the potential interest in electronics and ptoelectronics, especially in nonlinear optics. In the present paper, we give a pressure stimulation into organic thin films and detect the induced displacement current.

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Improvement of Bleaching Performance of Photosensitive Electrochromic Device by the Additive of TEMPOL (TEMPOL 첨가제 적용에 의한 광감응형 전기변색 소자 탈색성능 향상)

  • Song, Seung Han;Park, Hee sung;Cho, Churl Hee;Hong, Sungjun;Han, Chi-Hwan
    • Journal of the Korean Chemical Society
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    • v.66 no.3
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    • pp.209-217
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    • 2022
  • We have developed photosensitive electrochromic smart windows that does not require any transparent conducting oxide (TCO) substrate. In our previous study, we demonstrated that a flexible film-type device made with a low temperature curing WO3 sol and TiO2 sol could show a reversible and rapid switching between colored and bleached state via incorporation of platinum catalysts on the surface of WO3 layer. However, when these devices were exposed to sunlight over 4 hour, it was confirmed that they did not return to fully bleached state in the darkened state due to their overcoloring process. In this study, we added 4-hydroxy-(2,2,6,6-tetramethylpiperidin-1-yl)oxyl (TEMPOL) as an additive to the electrolyte of photosensitive electrochromic device to effectively prevent the undesired overcoloring process. The resulting device with TEMPOL indeed did not undergo excessive coloration and showed great reversibility even after being exposed to sunlight for over 4 hours. Various concentrations of TEMPOL were applied to compare changes in the visible transmittance and coloring/bleaching kinetics of devices. In terms of energetic point of view, we proposed a plausible mechanism of TEMPOL to prevent excessive coloration.