Direct Assembly of Beta Zeolite Seeds into Mesoporous Nanomaterials: Structural Characterization and Catalytic Application
碩士 === 國立臺灣大學 === 化學研究所 === 103 === A large-area two-dimensional mesostructure with well-ordered mesochannels, especially for supported mesoporous silica thin films (MSTFs) with vertical mesochannels, have drawn lots of attention in potential applications. However, due to dissimilarity of two interf...
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ndltd-TW-103NTU050650832016-11-19T04:09:55Z http://ndltd.ncl.edu.tw/handle/11059848326364410036 Direct Assembly of Beta Zeolite Seeds into Mesoporous Nanomaterials: Structural Characterization and Catalytic Application 沸石晶種自組裝合成中孔洞二氧化矽奈米材料之結構鑑定及催化應用 Tzu-Ying Chen 陳姿穎 碩士 國立臺灣大學 化學研究所 103 A large-area two-dimensional mesostructure with well-ordered mesochannels, especially for supported mesoporous silica thin films (MSTFs) with vertical mesochannels, have drawn lots of attention in potential applications. However, due to dissimilarity of two interfaces, micelle-templating method usually leads to parallel aligned channels on substrates. Herein we introduce an oil agent into synthetic solution for effectively tuning interfacial interaction between the substrate and solution. As a result, the oil agent here serves as two key roles: (i) one is to tune the orientation of mesochannels perpendicular to the substrate. (ii) The other is to controll the mesochannel sizes in the range of 4-6 nm. Thus, a series of pore-size controllable silica thin films can be obtained in the size of 1 Chung-Yuan Mou 牟中原 2015 學位論文 ; thesis 116 en_US |
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碩士 === 國立臺灣大學 === 化學研究所 === 103 === A large-area two-dimensional mesostructure with well-ordered mesochannels, especially for supported mesoporous silica thin films (MSTFs) with vertical mesochannels, have drawn lots of attention in potential applications. However, due to dissimilarity of two interfaces, micelle-templating method usually leads to parallel aligned channels on substrates. Herein we introduce an oil agent into synthetic solution for effectively tuning interfacial interaction between the substrate and solution. As a result, the oil agent here serves as two key roles: (i) one is to tune the orientation of mesochannels perpendicular to the substrate. (ii) The other is to controll the mesochannel sizes in the range of 4-6 nm. Thus, a series of pore-size controllable silica thin films can be obtained in the size of 1
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author2 |
Chung-Yuan Mou |
author_facet |
Chung-Yuan Mou Tzu-Ying Chen 陳姿穎 |
author |
Tzu-Ying Chen 陳姿穎 |
spellingShingle |
Tzu-Ying Chen 陳姿穎 Direct Assembly of Beta Zeolite Seeds into Mesoporous Nanomaterials: Structural Characterization and Catalytic Application |
author_sort |
Tzu-Ying Chen |
title |
Direct Assembly of Beta Zeolite Seeds into Mesoporous Nanomaterials: Structural Characterization and Catalytic Application |
title_short |
Direct Assembly of Beta Zeolite Seeds into Mesoporous Nanomaterials: Structural Characterization and Catalytic Application |
title_full |
Direct Assembly of Beta Zeolite Seeds into Mesoporous Nanomaterials: Structural Characterization and Catalytic Application |
title_fullStr |
Direct Assembly of Beta Zeolite Seeds into Mesoporous Nanomaterials: Structural Characterization and Catalytic Application |
title_full_unstemmed |
Direct Assembly of Beta Zeolite Seeds into Mesoporous Nanomaterials: Structural Characterization and Catalytic Application |
title_sort |
direct assembly of beta zeolite seeds into mesoporous nanomaterials: structural characterization and catalytic application |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/11059848326364410036 |
work_keys_str_mv |
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