Preparation and Photocatalytic Activity Study of Calcium Bismuth Oxide Photocatalysts with Core-shell Structure

碩士 === 國立東華大學 === 材料科學與工程學系 === 95 === Core-shell structure calcium bismuth oxide photocatalysts prepared by chemical impregnation method. The result indicated adding HNO3 can promoted the reaction. From the different reaction temperature experiments, we found that in the 500℃and 550℃have the best p...

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Main Authors: Ren-Fong Cai, 蔡任豐
Other Authors: Wen-Ku Chang
Format: Others
Language:zh-TW
Published: 2007
Online Access:http://ndltd.ncl.edu.tw/handle/bp52c7
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spelling ndltd-TW-095NDHU51590242019-05-15T19:47:46Z http://ndltd.ncl.edu.tw/handle/bp52c7 Preparation and Photocatalytic Activity Study of Calcium Bismuth Oxide Photocatalysts with Core-shell Structure 具備core-shell結構鉍酸鈣光觸媒材料之製備與光催化活性研究 Ren-Fong Cai 蔡任豐 碩士 國立東華大學 材料科學與工程學系 95 Core-shell structure calcium bismuth oxide photocatalysts prepared by chemical impregnation method. The result indicated adding HNO3 can promoted the reaction. From the different reaction temperature experiments, we found that in the 500℃and 550℃have the best photocatalysic activities. Reacted in the 550℃,generated special band structure due to the core-shell structure. It makes the electron-hole pairs separated well. From the different reaction temperature and time experiments, when the reaction temperature in the 450℃, a lot of Bi5O7NO3 were formed, and it decomposed during the second reaction. Temperature is the main factor of the calcium bismuth oxide phase formation. In the same reaction temperature, its phase are the same, and the phase ratio are slight different. The Ca/Bi ratio is the important factor during the reaction. The higher Ca/Bi ratio, the better photocatalytic activities are observation, and the reacted in the 500℃ photocatalysts photocatalytic activities are better than reacted in the 450℃. Wen-Ku Chang 張文固 2007 學位論文 ; thesis 102 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立東華大學 === 材料科學與工程學系 === 95 === Core-shell structure calcium bismuth oxide photocatalysts prepared by chemical impregnation method. The result indicated adding HNO3 can promoted the reaction. From the different reaction temperature experiments, we found that in the 500℃and 550℃have the best photocatalysic activities. Reacted in the 550℃,generated special band structure due to the core-shell structure. It makes the electron-hole pairs separated well. From the different reaction temperature and time experiments, when the reaction temperature in the 450℃, a lot of Bi5O7NO3 were formed, and it decomposed during the second reaction. Temperature is the main factor of the calcium bismuth oxide phase formation. In the same reaction temperature, its phase are the same, and the phase ratio are slight different. The Ca/Bi ratio is the important factor during the reaction. The higher Ca/Bi ratio, the better photocatalytic activities are observation, and the reacted in the 500℃ photocatalysts photocatalytic activities are better than reacted in the 450℃.
author2 Wen-Ku Chang
author_facet Wen-Ku Chang
Ren-Fong Cai
蔡任豐
author Ren-Fong Cai
蔡任豐
spellingShingle Ren-Fong Cai
蔡任豐
Preparation and Photocatalytic Activity Study of Calcium Bismuth Oxide Photocatalysts with Core-shell Structure
author_sort Ren-Fong Cai
title Preparation and Photocatalytic Activity Study of Calcium Bismuth Oxide Photocatalysts with Core-shell Structure
title_short Preparation and Photocatalytic Activity Study of Calcium Bismuth Oxide Photocatalysts with Core-shell Structure
title_full Preparation and Photocatalytic Activity Study of Calcium Bismuth Oxide Photocatalysts with Core-shell Structure
title_fullStr Preparation and Photocatalytic Activity Study of Calcium Bismuth Oxide Photocatalysts with Core-shell Structure
title_full_unstemmed Preparation and Photocatalytic Activity Study of Calcium Bismuth Oxide Photocatalysts with Core-shell Structure
title_sort preparation and photocatalytic activity study of calcium bismuth oxide photocatalysts with core-shell structure
publishDate 2007
url http://ndltd.ncl.edu.tw/handle/bp52c7
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