Fabrication of Three-Dimensional Cu2(OH)3Cl NanoflowersWith The Aid of Au-Cu Hollow Nanospheres Using a Solution-phase Methodology
碩士 === 國立成功大學 === 化學系碩博士班 === 93 === Flower-like nanostructures of botallackite Cu2(OH)3Cl have been synthesized in the solution with the aid of Au-Cu hollow nanospheres. The nanoflowers are three-dimensional nanostructures with several hundreds nanometers in size and contain tens of self-organizat...
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ndltd-TW-093NCKU50650162017-06-02T04:42:04Z http://ndltd.ncl.edu.tw/handle/16868863464461754117 Fabrication of Three-Dimensional Cu2(OH)3Cl NanoflowersWith The Aid of Au-Cu Hollow Nanospheres Using a Solution-phase Methodology 利用金銅奈米空球在溶液相中製備三維的Cu2(OH)3Cl奈米花 Min-Tien Hsiao 蕭閔典 碩士 國立成功大學 化學系碩博士班 93 Flower-like nanostructures of botallackite Cu2(OH)3Cl have been synthesized in the solution with the aid of Au-Cu hollow nanospheres. The nanoflowers are three-dimensional nanostructures with several hundreds nanometers in size and contain tens of self-organization layered petals. Formation of botallackite Cu2(OH)3Cl nanoflowers was strongly associated with the presence of Au-Cu hollow nanospheres. The morphologied and composition of hollow and nanoflowers have been characterized by SEM, TEM, HR-TEM, SAED, EDX and XRD. We had controlled the time of reaction to get the time-dependent evolution of nanoflowers;and gone on adding protective agent experiments , in argon condition and in oxygen condition experiment to discuss the nanoflower’s formation mechanism. Finally, we utilized a cationic surfactant to separated hollow nanospheres and nanoflowers. Chen-Sheng Yeh 葉晨聖 2005 學位論文 ; thesis 62 zh-TW |
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碩士 === 國立成功大學 === 化學系碩博士班 === 93 === Flower-like nanostructures of botallackite Cu2(OH)3Cl have been synthesized in the solution with the aid of Au-Cu hollow nanospheres. The nanoflowers are three-dimensional nanostructures with several hundreds nanometers in size and contain tens of self-organization layered petals. Formation of botallackite Cu2(OH)3Cl nanoflowers was strongly associated with the presence of Au-Cu hollow nanospheres. The morphologied and composition of hollow and nanoflowers have been characterized by SEM, TEM, HR-TEM, SAED, EDX and XRD. We had controlled the time of reaction to get the time-dependent evolution of nanoflowers;and gone on adding protective agent experiments , in argon condition and in oxygen condition experiment to discuss the nanoflower’s formation mechanism. Finally, we utilized a cationic surfactant to separated hollow nanospheres and nanoflowers.
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author2 |
Chen-Sheng Yeh |
author_facet |
Chen-Sheng Yeh Min-Tien Hsiao 蕭閔典 |
author |
Min-Tien Hsiao 蕭閔典 |
spellingShingle |
Min-Tien Hsiao 蕭閔典 Fabrication of Three-Dimensional Cu2(OH)3Cl NanoflowersWith The Aid of Au-Cu Hollow Nanospheres Using a Solution-phase Methodology |
author_sort |
Min-Tien Hsiao |
title |
Fabrication of Three-Dimensional Cu2(OH)3Cl NanoflowersWith The Aid of Au-Cu Hollow Nanospheres Using a Solution-phase Methodology |
title_short |
Fabrication of Three-Dimensional Cu2(OH)3Cl NanoflowersWith The Aid of Au-Cu Hollow Nanospheres Using a Solution-phase Methodology |
title_full |
Fabrication of Three-Dimensional Cu2(OH)3Cl NanoflowersWith The Aid of Au-Cu Hollow Nanospheres Using a Solution-phase Methodology |
title_fullStr |
Fabrication of Three-Dimensional Cu2(OH)3Cl NanoflowersWith The Aid of Au-Cu Hollow Nanospheres Using a Solution-phase Methodology |
title_full_unstemmed |
Fabrication of Three-Dimensional Cu2(OH)3Cl NanoflowersWith The Aid of Au-Cu Hollow Nanospheres Using a Solution-phase Methodology |
title_sort |
fabrication of three-dimensional cu2(oh)3cl nanoflowerswith the aid of au-cu hollow nanospheres using a solution-phase methodology |
publishDate |
2005 |
url |
http://ndltd.ncl.edu.tw/handle/16868863464461754117 |
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