Study on the mechanism of nanosilver particles on the modified PAN template

碩士 === 國立成功大學 === 化學工程學系碩博士班 === 92 ===   The polyacrylonitrile fiber(PAN fiber) was modified by hydroxylamine solution to form polyacryloamidoxime fiber (PAAm fiber). FT-IR was used to analyze the modified condition of PAAm fiber, and then, element analyzer(EA) was used to measure the modification...

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Main Authors: Guan-Ting Hong, 洪貫庭
Other Authors: Chuh-Yung Chen
Format: Others
Language:zh-TW
Published: 2004
Online Access:http://ndltd.ncl.edu.tw/handle/2gu79u
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spelling ndltd-TW-092NCKU50630212019-05-15T20:21:36Z http://ndltd.ncl.edu.tw/handle/2gu79u Study on the mechanism of nanosilver particles on the modified PAN template 奈米銀粒於改質之聚丙烯腈膜板上形成機制的探討 Guan-Ting Hong 洪貫庭 碩士 國立成功大學 化學工程學系碩博士班 92   The polyacrylonitrile fiber(PAN fiber) was modified by hydroxylamine solution to form polyacryloamidoxime fiber (PAAm fiber). FT-IR was used to analyze the modified condition of PAAm fiber, and then, element analyzer(EA) was used to measure the modification rate of PAAm fiber. Amount of silver ions chelated by the PAAm fiber could be determined by Atomic absorption(AA) spectrophotometer. Chelated silver ions of the PAAm fiber were reduced via chemical reduction method to form PAAm-Ag nanocomposite fiber in this study. The average particle size on the PAAm-Ag fiber which observed by SEM was in the range of 23nm and 30nm which could be controlled by different pH values and reducing temperatures.   In addition, the mechanism of growing nanoparticles on polymer membrane was observed by the UV-vis absorbance. TEM and SEM could determine the distribution of particle sizes on the surface and inside the polymer membrane. UV-vis absorbance near 350nm was appeared in the initial stage of different reducing condition, but no any nanoparticles appeared in this stage after TEM measurement. Thus, the absorbance was due to the formation of silver clusters, not silver nanoparticles. The average particle size increased and the size distribution became narrowed in low pH value. Particle size inside polymer membrane was from 4.9nm to 6.2nm, and there was a 425nm absorption peak. When the pH value of reaction aqueous is controlled at basic, it caused the nanoparticles to aggregate. Furthermore, as the reducing temperature increased to 60℃, the double distribution of the nanoparticles would be appeared. The mechanism of growing nanoparticles in other reducing conditions will also discussed in my research. Chuh-Yung Chen 陳志勇 2004 學位論文 ; thesis 74 zh-TW
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language zh-TW
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description 碩士 === 國立成功大學 === 化學工程學系碩博士班 === 92 ===   The polyacrylonitrile fiber(PAN fiber) was modified by hydroxylamine solution to form polyacryloamidoxime fiber (PAAm fiber). FT-IR was used to analyze the modified condition of PAAm fiber, and then, element analyzer(EA) was used to measure the modification rate of PAAm fiber. Amount of silver ions chelated by the PAAm fiber could be determined by Atomic absorption(AA) spectrophotometer. Chelated silver ions of the PAAm fiber were reduced via chemical reduction method to form PAAm-Ag nanocomposite fiber in this study. The average particle size on the PAAm-Ag fiber which observed by SEM was in the range of 23nm and 30nm which could be controlled by different pH values and reducing temperatures.   In addition, the mechanism of growing nanoparticles on polymer membrane was observed by the UV-vis absorbance. TEM and SEM could determine the distribution of particle sizes on the surface and inside the polymer membrane. UV-vis absorbance near 350nm was appeared in the initial stage of different reducing condition, but no any nanoparticles appeared in this stage after TEM measurement. Thus, the absorbance was due to the formation of silver clusters, not silver nanoparticles. The average particle size increased and the size distribution became narrowed in low pH value. Particle size inside polymer membrane was from 4.9nm to 6.2nm, and there was a 425nm absorption peak. When the pH value of reaction aqueous is controlled at basic, it caused the nanoparticles to aggregate. Furthermore, as the reducing temperature increased to 60℃, the double distribution of the nanoparticles would be appeared. The mechanism of growing nanoparticles in other reducing conditions will also discussed in my research.
author2 Chuh-Yung Chen
author_facet Chuh-Yung Chen
Guan-Ting Hong
洪貫庭
author Guan-Ting Hong
洪貫庭
spellingShingle Guan-Ting Hong
洪貫庭
Study on the mechanism of nanosilver particles on the modified PAN template
author_sort Guan-Ting Hong
title Study on the mechanism of nanosilver particles on the modified PAN template
title_short Study on the mechanism of nanosilver particles on the modified PAN template
title_full Study on the mechanism of nanosilver particles on the modified PAN template
title_fullStr Study on the mechanism of nanosilver particles on the modified PAN template
title_full_unstemmed Study on the mechanism of nanosilver particles on the modified PAN template
title_sort study on the mechanism of nanosilver particles on the modified pan template
publishDate 2004
url http://ndltd.ncl.edu.tw/handle/2gu79u
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