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Fabrication of palladium nanoparticle decorated silica nanotubes for olefination of aryl iodides : 요오드화 아릴의 올레핀화 반응을 위한 팔라디움 나노입자가 부착된 실리카 나노튜브의 제조

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dc.contributor.advisor장정식-
dc.contributor.author서영덕-
dc.date.accessioned2017-07-19T05:55:22Z-
dc.date.available2017-07-19T05:55:22Z-
dc.date.issued2015-08-
dc.identifier.other000000046266-
dc.identifier.urihttps://hdl.handle.net/10371/129380-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 화학생물공학부, 2015. 8. 장정식.-
dc.description.abstractPreparation of anisotropic material with various functionality has been widely studied and the applications of these fascinating materials in micro/nano size have advantages distinguished from traditional bulk materials. The anisotropic nano material having different in-and-out functional groups can be utilized as selective nanocarrier and smart nanocatalyst. In this paper, silica nanotube was fabricated by vapor phase synthesis (VPS) method using anodic aluminum oxide (AAO) as hard template for olefination of aryl iodide and carboxylic group was introduced inside the silica nanotube by vapor deposition polymerization (VDP) method. Then, silica nanotube with in-and-out bifunctionality was successfully fabricated by additional hydrophobic silane treatment. Furthermore, palladium nanoparticle can be introduced to silica nanotube with different in-and-out bifunctional group selectively. Then, palladium ion was inserted inside of the nanotube and the palladium ion was reduced by hydrogen gas. The palladium ion can be coordinated with the carboxyl group of bifunctional silica nanotube. Heck reaction for 3 types of olefination of aryl iodides was conducted by Pd-inserted bifunctional silica nanotube and the highest olefination efficiency of 99% was obtained. Our novel approach may open up a new method for fabrication of an anisotropic carrier for nano-catalytic application.-
dc.description.tableofcontentsContents

Abstract…………………. i
List of Abbreviations…………………. iii
List of Figures…………………. iv
List of Tables…………………. vi
Contents …………………. vii

Chapter 1 Introduction 1
1.1 Size effect of the nanocatalyst 1
1.2 Anisotropic nanomaterial 3
1.3 Hard template method 5
1.4 Heck reaction 7
1.5 Objective of this study 10


Chapter 2 Experimental Details 11
2.1 Materials 11
2.2 Preparation of silica nanotube 12
2.3 Preparation of inner-wall-treated silica nanotube 12
2.4 Preparation of inner-wall-PAA-silica nanotube (PAA-silica) 13
2.5 Preparation of bifunctional silica nanotube (F-PAA-silica) 14
2.6 Preparation of palladium inserted silica nanotube (Pd-PAA-silica) 14
2.7 Heck reaction condition by palladium inserted bifunctional silica nanotube 15
2.8 Characterization 15

Chapter 3 Results and Discussion 17
3.1 Fabrication of the bifunctional silica nanotube (F-PAA-silica) 17
3.2 Characterization of the bifunctional silica nanotube (F-PAA-silica) 19
3.2.1 Fabrication of the bifunctional silica nanotube 19
3.2.2 TEM images and FT-IR spectra of inner-wall-treated silica nanotube 22
3.2.3 SEM and EDX images of bifunctional silica nanotube 29

3.3 Heck reaction of the Pd-inserted bifunctional silica nanotube 33

Chapter 4 Conclusions 37

References 38

국문초록 43
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dc.formatapplication/pdf-
dc.format.extent2018282 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoko-
dc.publisher서울대학교 대학원-
dc.subject나노 촉매-
dc.subject.ddc660-
dc.titleFabrication of palladium nanoparticle decorated silica nanotubes for olefination of aryl iodides-
dc.title.alternative요오드화 아릴의 올레핀화 반응을 위한 팔라디움 나노입자가 부착된 실리카 나노튜브의 제조-
dc.typeThesis-
dc.contributor.AlternativeAuthorSeo Young Deok-
dc.description.degreeMaster-
dc.citation.pages44-
dc.contributor.affiliation공과대학 화학생물공학부-
dc.date.awarded2015-08-
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