Synthesis and Characterization of anti-oxidative copper nanoparticles

碩士 === 國立中央大學 === 化學工程與材料工程學系 === 101 === In general, copper nanoparticles are easy to oxidize in the ambient conditions. That is the main obstacle for copper ink to use because the appearance of copper oxide will result in rising the sintering temperature and decreasing the conductivity. Therefore...

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Main Authors: Chia-Fen Chang, 張嘉芬
Other Authors: Heng-Kwong Tsao
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/48415849261915013606
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spelling ndltd-TW-101NCU050630032015-10-13T22:30:12Z http://ndltd.ncl.edu.tw/handle/48415849261915013606 Synthesis and Characterization of anti-oxidative copper nanoparticles 抗氧化奈米銅粒子的製備及分析 Chia-Fen Chang 張嘉芬 碩士 國立中央大學 化學工程與材料工程學系 101 In general, copper nanoparticles are easy to oxidize in the ambient conditions. That is the main obstacle for copper ink to use because the appearance of copper oxide will result in rising the sintering temperature and decreasing the conductivity. Therefore, preventing copper nanoparticles from oxidization becomes an important issue. In this study, the addition of hydrazine utilized as oxygen scanvenger decreases the oxygen concentration in the liquid media. This method could prevent the copper nanoparticles from the exposure of oxygen and copper nanoparticles could store more than two months without oxidation. If the reducing agent is stronger and the concentration of gelatin is appropriate, the size of CuNPs is smaller. When the CuNPs is oxidized, there are two different oxidation final states. If the concentration of gelatin is higher, the oxidation state is [Cu(gel)]2+ . If the concentration of gelatin is lower, the oxidation state is [Cu(OH)4]2-. After washing two times by DI water, the impurities could be totally removed. The shiny precipitate can not be redispersed by sonocation and can be taken by tweezers. The precipitation is centrifugation-induced sintering, and its conductivity is similar with silver paste. Heng-Kwong Tsao 曹恆光 2013 學位論文 ; thesis 82 zh-TW
collection NDLTD
language zh-TW
format Others
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description 碩士 === 國立中央大學 === 化學工程與材料工程學系 === 101 === In general, copper nanoparticles are easy to oxidize in the ambient conditions. That is the main obstacle for copper ink to use because the appearance of copper oxide will result in rising the sintering temperature and decreasing the conductivity. Therefore, preventing copper nanoparticles from oxidization becomes an important issue. In this study, the addition of hydrazine utilized as oxygen scanvenger decreases the oxygen concentration in the liquid media. This method could prevent the copper nanoparticles from the exposure of oxygen and copper nanoparticles could store more than two months without oxidation. If the reducing agent is stronger and the concentration of gelatin is appropriate, the size of CuNPs is smaller. When the CuNPs is oxidized, there are two different oxidation final states. If the concentration of gelatin is higher, the oxidation state is [Cu(gel)]2+ . If the concentration of gelatin is lower, the oxidation state is [Cu(OH)4]2-. After washing two times by DI water, the impurities could be totally removed. The shiny precipitate can not be redispersed by sonocation and can be taken by tweezers. The precipitation is centrifugation-induced sintering, and its conductivity is similar with silver paste.
author2 Heng-Kwong Tsao
author_facet Heng-Kwong Tsao
Chia-Fen Chang
張嘉芬
author Chia-Fen Chang
張嘉芬
spellingShingle Chia-Fen Chang
張嘉芬
Synthesis and Characterization of anti-oxidative copper nanoparticles
author_sort Chia-Fen Chang
title Synthesis and Characterization of anti-oxidative copper nanoparticles
title_short Synthesis and Characterization of anti-oxidative copper nanoparticles
title_full Synthesis and Characterization of anti-oxidative copper nanoparticles
title_fullStr Synthesis and Characterization of anti-oxidative copper nanoparticles
title_full_unstemmed Synthesis and Characterization of anti-oxidative copper nanoparticles
title_sort synthesis and characterization of anti-oxidative copper nanoparticles
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/48415849261915013606
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