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Preparation and Investigation of Synthetic Carbon Nanosheets and Copper (II)-Polydopamine for Hydrogen Production : 탄소 나노 시트 및 구리 이온 함유 폴리도파민의 수소 생산 촉매 합성 및 연구

DC Field Value Language
dc.contributor.advisor남기태-
dc.contributor.author안중현-
dc.date.accessioned2018-05-28T16:16:35Z-
dc.date.available2018-05-28T16:16:35Z-
dc.date.issued2018-02-
dc.identifier.other000000150579-
dc.identifier.urihttps://hdl.handle.net/10371/140637-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 공과대학 재료공학부, 2018. 2. 남기태.-
dc.description.abstractThe development of efficient co-catalysts indicates one of the most significant topics for the commercialization of photoelectrochemical hydrogen evolution. The design and preparation of carbon-based catalysts is a significant research part for inexpensive, environment-friendly, and durable catalysts that may replace previously developed noble metal catalysts. Nevertheless, the challenge associated with the previous carbon-based catalysts, such as graphene and graphene-based materials, lies in the complicated and inefficient synthetic processes.
As the simplest model carbon-based platform, CVD-monolayer graphene was chosen as a HER catalyst. Graphene possesses excellent transmittance and superior intrinsic carrier mobility. For the first time, we have investigated new possibilities of monolayer graphene as the efficient HER catalyst. The catalytic activity can be further enhanced by generating more active sites. Treatment with N2 plasma also induces N doping and abundant defects. The catalyst exhibits a lower Tafel slope (45 mV/decade) and a higher exchange current density (7.1×10-5 mA/cm2) than those of other previously reported carbon-based HER catalysts, indicating performance comparable to that of Pt catalyst. Based on the electrochemical analysis, the active sites of the N-doped graphene have been identified and quantified.
Moreover, another type of the biomimetic carbon-based nanosheets is addressed as a new HER catalyst. Here, inspired by biomolecular system based on mussel adhesive protein, we prepared transition metal-complexed PDA matrix (M-PDA) as a new hydrogen evolution catalyst and investigated HER catalytic properties in neutral pH condition. Through oxidative polymerization of dopamine, we synthesized PDA with various transition metal such as Co2+, Cu2+, Mn2+, Ni2+, and Fe3+ ion. Moreover, Cu(II)-PDA complex show the lowest overpotential for HER among these M-PDAs. To the best of our knowledge, there is no previous studies on the application of biomimetic PDA derivatives to hydrogen production catalysts, and the overpotential of Cu(II)-PDA is lowest value among copper-based electrocatalysts for hydrogen production. This significant enhancement achieved in this study emphasizes the new possibilities for the application of bioinspired materials as hydrogen evolution reaction catalyst as well as molecular precursor approach.
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dc.description.tableofcontentsChapter 1 Introduction 1
1.1 Energy demand for renewable energy source 1
1.2 Hydrogen evolution reaction (HER) 3
1.3 Graphene-based HER catalysts 9
1.4 Polydopamine and its derivatives 14
1.5 Bibliography 25

Chapter 2 Experimental and analysis 29
2.1 Synthesis of catalysts 29
2.2 Electrode preparation 30
2.3 Analysis methods of synthesized catalyst and electrode 31
2.4 Characterization method for catalytic activity 32

Chapter 3 Graphene quantum sheets as HER catalyst from monolayer graphene via nitrogen plasma 35
3.1 Introduction 35
3.2 Results and Discussion 39
3.3 Conclusion 42
3.4 Bibliography 51



Chapter 4 Biomimetric carbon-based catalyst inspired by polydopamine 53
4.1 Introduction 53
4.2 Results and Discussion 56
4.2.1 Surface characterization: Raman and XPS spectra 60
4.2.2 Photoelectrochemical response 63
4.2.3 Electrochemical response and HER mechanism 65
4.2.4 Passivation effect of carbon nanosheet 71
4.3 Conclusion 73
4.4 Bibliography 74

Chapter 5 Cu(II)-complexed Polydopamine for HER catalysts 77
5.1 Introduction 77
5.2 Results and Discussion 80
5.2.1 Synthetic process and characterization 80
5.2.2 Electrochemical response and stability test 85
5.2.3 pH dependency and Impedance study 86
5.3 Conclusion 89
5.4 Bibliography 96

Chapter 6 Concluding remarks 99

Publication list 103

국문 초록 106
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dc.formatapplication/pdf-
dc.format.extent4947106 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectphotoelectrochemical silicon cell-
dc.subjectcarbon-based catalyst-
dc.subjectBioinspired-
dc.subjectDopamine-
dc.subjectWater splitting-
dc.subjectHydrogen production-
dc.subject.ddc620.1-
dc.titlePreparation and Investigation of Synthetic Carbon Nanosheets and Copper (II)-Polydopamine for Hydrogen Production-
dc.title.alternative탄소 나노 시트 및 구리 이온 함유 폴리도파민의 수소 생산 촉매 합성 및 연구-
dc.typeThesis-
dc.description.degreeDoctor-
dc.contributor.affiliation공과대학 재료공학부-
dc.date.awarded2018-02-
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