The Investigation by Methyltriethoxysilane / Poly(oxyethylene) for Manufacturing Double-Layered Flexibility Anti-Reflection Thin-Film

碩士 === 元智大學 === 化學工程與材料科學學系 === 103 === In this study used the sol-gel method, by MTES (methyltriethoxysilane) as a precursor reacts in acidic and alkaline two environments to form different gel structures respectively, and adding different ratios of polyethylene glycol (PEG) to condensation reactio...

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Main Authors: Jung-Ruei Hsu, 許中睿
Other Authors: Jenn-Chiu Hwang
Format: Others
Language:zh-TW
Online Access:http://ndltd.ncl.edu.tw/handle/58884299625012799582
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spelling ndltd-TW-103YZU050631022016-09-11T04:09:03Z http://ndltd.ncl.edu.tw/handle/58884299625012799582 The Investigation by Methyltriethoxysilane / Poly(oxyethylene) for Manufacturing Double-Layered Flexibility Anti-Reflection Thin-Film 甲基三乙氧基矽烷/聚乙二醇製備雙層可撓曲抗反射膜研究 Jung-Ruei Hsu 許中睿 碩士 元智大學 化學工程與材料科學學系 103 In this study used the sol-gel method, by MTES (methyltriethoxysilane) as a precursor reacts in acidic and alkaline two environments to form different gel structures respectively, and adding different ratios of polyethylene glycol (PEG) to condensation reaction in accordance with the experimental conditions, so that the integral structure of organic - inorganic become the Interpenetrating Polymer Network (IPNs). To accomplish the double-Layered flexibility anti-reflection thin film. By means of Fourier Transform Infrared spectroscopy (FTIR) analyzed the structure, Scanning Electron Microscope (SEM) observed the base-catalyzed reaction to form particles cluster structure, and acid-catalyzed reaction obtain a dense film structure, Pencil Testers measured in quality H, and UV/visible spectroscopy (UV-Vis) confirmed to boost by 5% of the light transmittance for the thin film that up to 99%. Therefore, it can be widely used to flexible electronic device. Jenn-Chiu Hwang 黃振球 學位論文 ; thesis 86 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 元智大學 === 化學工程與材料科學學系 === 103 === In this study used the sol-gel method, by MTES (methyltriethoxysilane) as a precursor reacts in acidic and alkaline two environments to form different gel structures respectively, and adding different ratios of polyethylene glycol (PEG) to condensation reaction in accordance with the experimental conditions, so that the integral structure of organic - inorganic become the Interpenetrating Polymer Network (IPNs). To accomplish the double-Layered flexibility anti-reflection thin film. By means of Fourier Transform Infrared spectroscopy (FTIR) analyzed the structure, Scanning Electron Microscope (SEM) observed the base-catalyzed reaction to form particles cluster structure, and acid-catalyzed reaction obtain a dense film structure, Pencil Testers measured in quality H, and UV/visible spectroscopy (UV-Vis) confirmed to boost by 5% of the light transmittance for the thin film that up to 99%. Therefore, it can be widely used to flexible electronic device.
author2 Jenn-Chiu Hwang
author_facet Jenn-Chiu Hwang
Jung-Ruei Hsu
許中睿
author Jung-Ruei Hsu
許中睿
spellingShingle Jung-Ruei Hsu
許中睿
The Investigation by Methyltriethoxysilane / Poly(oxyethylene) for Manufacturing Double-Layered Flexibility Anti-Reflection Thin-Film
author_sort Jung-Ruei Hsu
title The Investigation by Methyltriethoxysilane / Poly(oxyethylene) for Manufacturing Double-Layered Flexibility Anti-Reflection Thin-Film
title_short The Investigation by Methyltriethoxysilane / Poly(oxyethylene) for Manufacturing Double-Layered Flexibility Anti-Reflection Thin-Film
title_full The Investigation by Methyltriethoxysilane / Poly(oxyethylene) for Manufacturing Double-Layered Flexibility Anti-Reflection Thin-Film
title_fullStr The Investigation by Methyltriethoxysilane / Poly(oxyethylene) for Manufacturing Double-Layered Flexibility Anti-Reflection Thin-Film
title_full_unstemmed The Investigation by Methyltriethoxysilane / Poly(oxyethylene) for Manufacturing Double-Layered Flexibility Anti-Reflection Thin-Film
title_sort investigation by methyltriethoxysilane / poly(oxyethylene) for manufacturing double-layered flexibility anti-reflection thin-film
url http://ndltd.ncl.edu.tw/handle/58884299625012799582
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