Preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis

碩士 === 國立中正大學 === 化學工程研究所 === 92 === Carbon nanotubes are filled with Ni, Co, Cu, Ag by means of low-temperature combustion synthesis. Control of the concentration of nitrate metal solution (Ni, Co, Cu, Ag) in the CNTs is crucial and is accomplished by adjusting different percentage of CHZ (carbohyd...

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Main Authors: Yu-Chun Wu, 吳昱寯
Other Authors: Chien-Chong Chen
Format: Others
Language:zh-TW
Published: 2004
Online Access:http://ndltd.ncl.edu.tw/handle/54658407860020560307
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spelling ndltd-TW-092CCU000630332015-10-13T13:39:29Z http://ndltd.ncl.edu.tw/handle/54658407860020560307 Preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis 以低溫燃燒合成法在奈米碳管內製備奈米金屬 Yu-Chun Wu 吳昱寯 碩士 國立中正大學 化學工程研究所 92 Carbon nanotubes are filled with Ni, Co, Cu, Ag by means of low-temperature combustion synthesis. Control of the concentration of nitrate metal solution (Ni, Co, Cu, Ag) in the CNTs is crucial and is accomplished by adjusting different percentage of CHZ (carbohydrazide), different shaky time by ultrasonic and drying the liquid reactions. A model to account for the filling and growth characteristics is proposed based on observations made with a high-resolution transmission electron microscope and selected area electron diffraction. From the investigation, it is available to take place low-temperature combustion synthesis in carbon nanotubes and carbon nanotubes are filled with metals. The percentage of filling: Ag > Cu > Ni > Co in same situation, the long shaky time of ultrasonic > the short shaky time of ultrasonic. The concentration of CHZ need the optimal percentage to get more CNTs filled metals. Drying the liquid reactants have a great support to improve the CNTs filled. In this study, this technique can be used to synthesise nanoparticles filled with Ni, Co, Cu, Ag. Chien-Chong Chen 陳建忠 2004 學位論文 ; thesis 0 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中正大學 === 化學工程研究所 === 92 === Carbon nanotubes are filled with Ni, Co, Cu, Ag by means of low-temperature combustion synthesis. Control of the concentration of nitrate metal solution (Ni, Co, Cu, Ag) in the CNTs is crucial and is accomplished by adjusting different percentage of CHZ (carbohydrazide), different shaky time by ultrasonic and drying the liquid reactions. A model to account for the filling and growth characteristics is proposed based on observations made with a high-resolution transmission electron microscope and selected area electron diffraction. From the investigation, it is available to take place low-temperature combustion synthesis in carbon nanotubes and carbon nanotubes are filled with metals. The percentage of filling: Ag > Cu > Ni > Co in same situation, the long shaky time of ultrasonic > the short shaky time of ultrasonic. The concentration of CHZ need the optimal percentage to get more CNTs filled metals. Drying the liquid reactants have a great support to improve the CNTs filled. In this study, this technique can be used to synthesise nanoparticles filled with Ni, Co, Cu, Ag.
author2 Chien-Chong Chen
author_facet Chien-Chong Chen
Yu-Chun Wu
吳昱寯
author Yu-Chun Wu
吳昱寯
spellingShingle Yu-Chun Wu
吳昱寯
Preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis
author_sort Yu-Chun Wu
title Preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis
title_short Preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis
title_full Preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis
title_fullStr Preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis
title_full_unstemmed Preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis
title_sort preparation of metal nanoparticles inside carbon nanotubes by low-temperature combustion synthesis
publishDate 2004
url http://ndltd.ncl.edu.tw/handle/54658407860020560307
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