Microwave-Assisted Synthesis of Nano-Catalyst Ink To The Inkjet Printing Technology Apply To The Metallization Pattern

碩士 === 國防大學理工學院 === 化學工程碩士班 === 100 === A novel method, microwave irradiation synthesis, is proposed for the preparation of thermo-sensitive poly(St-co-NIPAAm) which can be used for the production of ink-jet printing ink. This study is about changing the microwave work and the microwave time. The co...

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Main Authors: Chiou, Yu Jhe, 邱渝喆
Other Authors: Ge, Ming De
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/31405170849930014714
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spelling ndltd-TW-100CCIT05000132015-10-13T21:07:17Z http://ndltd.ncl.edu.tw/handle/31405170849930014714 Microwave-Assisted Synthesis of Nano-Catalyst Ink To The Inkjet Printing Technology Apply To The Metallization Pattern 微波輔助方法製備奈米觸媒墨水於噴印金屬化之應用 Chiou, Yu Jhe 邱渝喆 碩士 國防大學理工學院 化學工程碩士班 100 A novel method, microwave irradiation synthesis, is proposed for the preparation of thermo-sensitive poly(St-co-NIPAAm) which can be used for the production of ink-jet printing ink. This study is about changing the microwave work and the microwave time. The copolymer is synthesized from the monomer Styrene and N-isopropyl- acrylamide. It has Sulfate group(SO42-) that can induce redox reaction with the noblemetallic particles. The use of microwave irradiation can greatly shorten the reaction time required for oligomer synthesis, say, from several hours to several minutes, in comparison with the water-bath heating method. Chemical groups, surface morphologies and particle sizes of the polymer-metal nanocomposites werecharacterized by FT-IR, NMR, LUM, SEM and TEM. The synthesized water-basednanocomposites used as ink solutions were directly printed onto various substratesurfaces, and followed by a typical electroless plating technique to form metallic wires. Ge, Ming De 葛明德 2012 學位論文 ; thesis 86 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國防大學理工學院 === 化學工程碩士班 === 100 === A novel method, microwave irradiation synthesis, is proposed for the preparation of thermo-sensitive poly(St-co-NIPAAm) which can be used for the production of ink-jet printing ink. This study is about changing the microwave work and the microwave time. The copolymer is synthesized from the monomer Styrene and N-isopropyl- acrylamide. It has Sulfate group(SO42-) that can induce redox reaction with the noblemetallic particles. The use of microwave irradiation can greatly shorten the reaction time required for oligomer synthesis, say, from several hours to several minutes, in comparison with the water-bath heating method. Chemical groups, surface morphologies and particle sizes of the polymer-metal nanocomposites werecharacterized by FT-IR, NMR, LUM, SEM and TEM. The synthesized water-basednanocomposites used as ink solutions were directly printed onto various substratesurfaces, and followed by a typical electroless plating technique to form metallic wires.
author2 Ge, Ming De
author_facet Ge, Ming De
Chiou, Yu Jhe
邱渝喆
author Chiou, Yu Jhe
邱渝喆
spellingShingle Chiou, Yu Jhe
邱渝喆
Microwave-Assisted Synthesis of Nano-Catalyst Ink To The Inkjet Printing Technology Apply To The Metallization Pattern
author_sort Chiou, Yu Jhe
title Microwave-Assisted Synthesis of Nano-Catalyst Ink To The Inkjet Printing Technology Apply To The Metallization Pattern
title_short Microwave-Assisted Synthesis of Nano-Catalyst Ink To The Inkjet Printing Technology Apply To The Metallization Pattern
title_full Microwave-Assisted Synthesis of Nano-Catalyst Ink To The Inkjet Printing Technology Apply To The Metallization Pattern
title_fullStr Microwave-Assisted Synthesis of Nano-Catalyst Ink To The Inkjet Printing Technology Apply To The Metallization Pattern
title_full_unstemmed Microwave-Assisted Synthesis of Nano-Catalyst Ink To The Inkjet Printing Technology Apply To The Metallization Pattern
title_sort microwave-assisted synthesis of nano-catalyst ink to the inkjet printing technology apply to the metallization pattern
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/31405170849930014714
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