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dc.contributor.advisor 유종성 -
dc.contributor.author Seim Isaac Kojo -
dc.date.accessioned 2023-09-18T21:01:08Z -
dc.date.available 2023-09-18T21:01:08Z -
dc.date.issued 2023 -
dc.identifier.uri http://hdl.handle.net/20.500.11750/46433 -
dc.identifier.uri http://dgist.dcollection.net/common/orgView/200000684355 -
dc.description Transition metal oxide and phosphide; oxygen reduction reaction; oxygen and hydrogen evolution reaction; water electrolyzer; zinc-air battery. -
dc.description.tableofcontents Ⅰ. Chapter 1: Synthesis and Characterization of NiCo-RuO2/gNC as an efficient electrocatalyst for rechargeable zinc air batteries. 1
1.1 Introduction 1
1.1.1 Components and working principles of ZAB. 3
1.1.2 Reaction Mechanism 4
1.1.3 Current status and challenges of ZABs 5
1.1.4 Motivation and objectives 6
1.1.5 Main objective 8
1.1.5.1 Specific objectives 8
1.2 Experimental Section. 9
1.2.1 Materials 9
1.2.2 Synthesis of highly graphitic N-doped carbon (gNC) via Mg reduction. 10
1.2.3 Synthesis of Nickel and Cobalt doped Ruthenium Oxide Supported on gNC (NiCo-RuO2/gNC) 10
1.2.4 Electrochemical Measurements. 11
1.3 Results and Discussion 12
1.3.1 Characterization of Materials 12
1.3.2 Electrochemical OER performance 22
1.3.3 Electrochemical ORR performance 24
1.3.4 Zn-Air Battery Performance. 26
1.3.4.1 Preparation of NiCo-RuO2/gNC air electrodes. 26
1.3.4.2 Assembly and practical evaluation of rechargeable zinc-air battery (RZAB) operating on NiCo-RuO2/gNC electrodes. 27
1.3.5 Origin of the excellent performance. 31
1.4 Conclusion 32
1.5 References 34
II. Chapter 2: Synthesis of Carbon Coated Phosphate-Functionalized Ruthenium-Iron Electrocatalyst for Overall Water Splitting: Highly Efficient Binder Free Electrodes for Hydrogen Generation in Alkaline and Neutral Media 42
2.1 Introduction 42
2.1.1 Overview of Hydrogen Production Through Water Electrolysis. 42
2.1.2 Current status and challenges of water electrolysis 45
2.2 Experimental Section 49
2.2.1 Materials 49
2.2.2 Substrate (NF) preparation 50
2.2.3 Synthesis of RuFe/NF 50
2.2.4 Synthesis of RuFe@C/NF 50
2.2.5 Synthesis of RuFeP/NF and RuFeP@C/NF 51
2.2.6 Electrocatalytic Activity 51
2.3 Results and Discussion 52
2.3.1 Structural Identification 52
2.3.2 Electrochemical OER performance 60
2.3.3 Electrochemical HER performance (Alkaline and Neutral medium) 67
2.3.4 Temperature and compositional ratio effect on the electrochemical OER/HER performance 70
2.3.5 Origin of the Excellent Performance of RuFeP@C/NF: Synthesis of Ru/NF, RuP/NF, RuP@C/NF, Fe/NF, FeP/NF, and FeP@C/NF. 73
2.3.6 Overall water splitting performance. 76
2.4 Conclusion 79
2.5 References 81
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dc.format.extent 91 -
dc.language eng -
dc.publisher DGIST -
dc.title Development of Highly Efficient and Durable Electrocatalysts for Overall Water Splitting and Rechargeable Zinc Air Battery Application -
dc.type Thesis -
dc.identifier.doi 10.22677/THESIS.200000684355 -
dc.description.degree Master -
dc.contributor.department Department of Energy Science and Engineering -
dc.contributor.coadvisor Sangaraju Shanmugam -
dc.date.awarded 2023-08-01 -
dc.publisher.location Daegu -
dc.description.database dCollection -
dc.citation XT.EM SE461 202308 -
dc.date.accepted 2023-09-14 -
dc.contributor.alternativeDepartment 에너지공학과 -
dc.subject.keyword Transition metal oxide and phosphide -
dc.subject.keyword oxygen reduction reaction -
dc.subject.keyword oxygen and hydrogen evolution reaction -
dc.subject.keyword water electrolyzer -
dc.subject.keyword zinc-air battery. -
dc.contributor.affiliatedAuthor Seim Isaac Kojo -
dc.contributor.affiliatedAuthor Jong-Sung Yu -
dc.contributor.affiliatedAuthor Sangaraju Shanmugam -
dc.contributor.alternativeName Seim Isaac Kojo -
dc.contributor.alternativeName Jong-Sung Yu -
dc.contributor.alternativeName 상가라주 샨무감 -
dc.rights.embargoReleaseDate 2028-08-31 -
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