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    SCOPUS SCIE

    SiO<sub>2</sub>/TiO<sub>2</sub>/n-Si/Ag(Cr)/TiO<sub>2</sub>thin films with superhydrophilicity and low-emissivity

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    https://www.riss.kr/link?id=A107703516

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    <P>In this study, SiO2/TiO2/n-Si/Ag(Cr)/TiO2 multilayer structures have been designed and deposited by the RF and DC magnetron sputtering at room temperature. The as-deposited TiO2/glass films which are initially amorphous in nature were subjected to post annealing at 673K for anatase phase TiO2. The anatase TiO2 films showed an optical bandgap similar to 3.32 eV. The Ag(Cr)/TiO2 showed very low-emissivity (low-e) value similar to 0.081 which is evaluated by using the sheet resistance (6.51 Omega/square) of the films. All the deposited films showed high visible transmittance (similar to 81%) and high infrared reflectance (72%) which are recorded by using the UV-vis-NIR spectrophotometer. In addition, experimentally obtained optical properties were in good agreement with the simulation data. The TiO2/n-Si heterojunction concept has been employed to enhance the superhydrophilicity of the deposited multilayer stack, TiO2/n-Si/Ag(Cr)/TiO2 films exhibited best superhydrophilicity with water contact angle similar to 2 degrees. The deposited multilayer structures SiO2/TiO2/n-Si/Ag(Cr)/TiO2 and TiO2/n-Si/Ag(Cr)/TiO2 achieved significant low-e and superhydrophilicity. (C) 2016 The Japan Society of Applied Physics</P>
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    <P>In this study, SiO2/TiO2/n-Si/Ag(Cr)/TiO2 multilayer structures have been designed and deposited by the RF and DC magnetron sputtering at room temperature. The as-deposited TiO2/glass films which are initially amorphous in nature were subject...

    <P>In this study, SiO2/TiO2/n-Si/Ag(Cr)/TiO2 multilayer structures have been designed and deposited by the RF and DC magnetron sputtering at room temperature. The as-deposited TiO2/glass films which are initially amorphous in nature were subjected to post annealing at 673K for anatase phase TiO2. The anatase TiO2 films showed an optical bandgap similar to 3.32 eV. The Ag(Cr)/TiO2 showed very low-emissivity (low-e) value similar to 0.081 which is evaluated by using the sheet resistance (6.51 Omega/square) of the films. All the deposited films showed high visible transmittance (similar to 81%) and high infrared reflectance (72%) which are recorded by using the UV-vis-NIR spectrophotometer. In addition, experimentally obtained optical properties were in good agreement with the simulation data. The TiO2/n-Si heterojunction concept has been employed to enhance the superhydrophilicity of the deposited multilayer stack, TiO2/n-Si/Ag(Cr)/TiO2 films exhibited best superhydrophilicity with water contact angle similar to 2 degrees. The deposited multilayer structures SiO2/TiO2/n-Si/Ag(Cr)/TiO2 and TiO2/n-Si/Ag(Cr)/TiO2 achieved significant low-e and superhydrophilicity. (C) 2016 The Japan Society of Applied Physics</P>

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