Preparation of the Micro-Nano Spheres of the Modified Polystyrene and research of Its Photonic Crystals

碩士 === 南台科技大學 === 化學工程與材枓工程系 === 95 === In recent years, polymer materials were widespread in the light and heat studies and photo-electricity industry. In this research, I used mainly emulsier-free emulsion polymerization and the batch reactor to synthesis monodispersed polystyrene(PS) nanospheres...

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Main Authors: Lee Ping Tsung, 李秉聰
Other Authors: Su Shun Fua
Format: Others
Language:zh-TW
Published: 2007
Online Access:http://ndltd.ncl.edu.tw/handle/72971904490691076825
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spelling ndltd-TW-095STUT00630302016-11-22T04:12:47Z http://ndltd.ncl.edu.tw/handle/72971904490691076825 Preparation of the Micro-Nano Spheres of the Modified Polystyrene and research of Its Photonic Crystals 改性聚苯乙烯微奈米球製備及其光子晶體性質之研究 Lee Ping Tsung 李秉聰 碩士 南台科技大學 化學工程與材枓工程系 95 In recent years, polymer materials were widespread in the light and heat studies and photo-electricity industry. In this research, I used mainly emulsier-free emulsion polymerization and the batch reactor to synthesis monodispersed polystyrene(PS) nanospheres latex. Next, using these monodispersed microspheres to fabricate photonic crystals. In addition, I used the Methyl Methacrylate (MMA) as the styrene’s modified monomer. The goal was to introduce the suitable functional group base to the particle’s surface. The results characterized by FTIR、TEM and Size Analyzer, can indicate that the PS microspheres, modified by MMA, were monodispersed and highly charged. It had increased its stability. Since the photonic crystals were made up of monodispersed polymer microspheres, the Polystyrene particles could apply to the photonic crystals. Under the gravity and centrifuge field, the PS microspheres were self-organized into an ordered structure- photonic crystals film. Therefore, the stop band gap of the structure is confirmed by UV-Vis transmission spectra and SEM images. Su Shun Fua 蘇順發 2007 學位論文 ; thesis 117 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 南台科技大學 === 化學工程與材枓工程系 === 95 === In recent years, polymer materials were widespread in the light and heat studies and photo-electricity industry. In this research, I used mainly emulsier-free emulsion polymerization and the batch reactor to synthesis monodispersed polystyrene(PS) nanospheres latex. Next, using these monodispersed microspheres to fabricate photonic crystals. In addition, I used the Methyl Methacrylate (MMA) as the styrene’s modified monomer. The goal was to introduce the suitable functional group base to the particle’s surface. The results characterized by FTIR、TEM and Size Analyzer, can indicate that the PS microspheres, modified by MMA, were monodispersed and highly charged. It had increased its stability. Since the photonic crystals were made up of monodispersed polymer microspheres, the Polystyrene particles could apply to the photonic crystals. Under the gravity and centrifuge field, the PS microspheres were self-organized into an ordered structure- photonic crystals film. Therefore, the stop band gap of the structure is confirmed by UV-Vis transmission spectra and SEM images.
author2 Su Shun Fua
author_facet Su Shun Fua
Lee Ping Tsung
李秉聰
author Lee Ping Tsung
李秉聰
spellingShingle Lee Ping Tsung
李秉聰
Preparation of the Micro-Nano Spheres of the Modified Polystyrene and research of Its Photonic Crystals
author_sort Lee Ping Tsung
title Preparation of the Micro-Nano Spheres of the Modified Polystyrene and research of Its Photonic Crystals
title_short Preparation of the Micro-Nano Spheres of the Modified Polystyrene and research of Its Photonic Crystals
title_full Preparation of the Micro-Nano Spheres of the Modified Polystyrene and research of Its Photonic Crystals
title_fullStr Preparation of the Micro-Nano Spheres of the Modified Polystyrene and research of Its Photonic Crystals
title_full_unstemmed Preparation of the Micro-Nano Spheres of the Modified Polystyrene and research of Its Photonic Crystals
title_sort preparation of the micro-nano spheres of the modified polystyrene and research of its photonic crystals
publishDate 2007
url http://ndltd.ncl.edu.tw/handle/72971904490691076825
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