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dc.contributor.advisor 박치영 -
dc.contributor.author Fitriandini Yasinta Wahyu -
dc.date.accessioned 2022-03-07T16:00:19Z -
dc.date.available 2022-03-07T16:00:19Z -
dc.date.issued 2022 -
dc.identifier.uri http://dgist.dcollection.net/common/orgView/200000595995 en_US
dc.identifier.uri http://hdl.handle.net/20.500.11750/16286 -
dc.description Hydrogen Production, Encapsulation, Ionic Liquid Cyclodextrin (ILCD), Exfoliation -
dc.description.statementofresponsibility N -
dc.description.tableofcontents Ⅰ. Introduction 1
1.1 Host-Guest 1
1.2 Ionic Liquid 3
1.3 Job’ s Plot 5
1.3.1 The Determination of the Stoichiometry of Cyclodextrin Inclusion Complexes by Spectral Methods: Possibilities and Limitations 9
1.3.2 Recognizing the Limited Applicability of Job Plots in Studying Host−Guest Interactions in Supramolecular Chemistry 10
1.4 Fullerene 11
1.4.1 Basic structure of fullerene 11
1.4.2 Fullerene derivatives 12
1.4.3 Exclusive properties of fullerene 12
1.4.4 Photocatalytic enhancement mechanism of fullerene C60 and its derivatives 12
1.4.5 Factors affecting material effectiveness 13
1.4.6 Synthesis strategy of fullerene modified photocatalyst 14
1.4.7 Application of fullerene modified photocatalyst 14
1.5 Hydrogen Production 15
1.5.1 Hydrogen Production Methods 16
Ⅱ. Methods 18
2.1 Materials 18
2.2 Synthesis of Ionic Liquid (IL) 18
2.3 Synthesis of Ionic Liquid-ꙋCyclodextrin (ILꙋCD) 18
2.4 Inclusion of Ionic Liquid-ꙋCyclodextrin (ILꙋCD) and Fullerene (C60) 18
2.5 Preparation of the ILꙋCD/C60/MoS2 18
2.6 Photocatalytic Hydrogen Production 19
2.7 Characterization 19
Ⅲ. Results 20
3.1 Ionic Liquid-ꙋCyclodextrin 20
3.2 Encapsulation of C60- IL-ꙋCD 21
3.2.1 Job’s Plot to Prove Ideal Molar Ratio of C60:ILCD 22
3.2.2 Benesi Hildebrand Plot to Represent Encapsulation Molar Ratio 23
3.3 Characterization of MoS2 Exfoliation with C60- IL-ꙋCD 23
3.3.1 Fourier transform infrared spectroscopy (FT-IR) data of composites 24
3.3.2 X-Ray diffraction data (XRD) of composites 24
3.3.3 Raman spectroscopy data of composites 25
3.3.4 Thermogravimetric analysis (TGA) data of composites 26
3.4 Hydrogen Production 26
3.4.1 Photoluminescence Spectra and Quenching ratios of hybrids 27
3.4.2 Scanning electron microscope (SEM) images of composites 28
Ⅳ. Conclusion 29
V. References 30
VI. 요약문 32
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dc.format.extent 32 -
dc.language eng -
dc.publisher DGIST -
dc.subject Hydrogen Production, Encapsulation, Ionic Liquid Cyclodextrin (ILCD), Exfoliation -
dc.title Highly Water-Soluble MoS2 and Encapsulated C60 with Ionic-Liquid Cyclodextrin Derivative Towards Improvement of Photocatalytic Hydrogen Production -
dc.type Thesis -
dc.identifier.doi 10.22677/thesis.200000595995 -
dc.description.degree Master -
dc.contributor.department Energy Science & Engineering -
dc.contributor.coadvisor Dae-Hyun Nam -
dc.date.awarded 2022/02 -
dc.publisher.location Daegu -
dc.description.database dCollection -
dc.citation XT.EM W34 202202 -
dc.date.accepted 1/21/22 -
dc.contributor.alternativeDepartment 에너지공학전공 -
dc.embargo.liftdate 20270228 -
dc.contributor.affiliatedAuthor Fitriandini Yasinta Wahyu -
dc.contributor.affiliatedAuthor Chiyoung Park -
dc.contributor.affiliatedAuthor Dae-Hyun Nam -
dc.contributor.alternativeName Fitriandini Yasinta Wahyu -
dc.contributor.alternativeName Chiyoung Park -
dc.contributor.alternativeName 남대현 -
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