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Plastic crystal electrolytes for all-solid-state Li-ion batteries

Title
Plastic crystal electrolytes for all-solid-state Li-ion batteries
Author(s)
Chang-Eui Yang
DGIST Authors
Yang, Chang-EuiKim, Sung-KyunLee, Hochun
Advisor
이호춘
Co-Advisor(s)
Sung-Kyun Kim
Issued Date
2020
Awarded Date
2020-02
Type
Thesis
Description
Li-ion batteries, all-solid-state batteries, solid electrolyte, plastic crystalline, additives
Table Of Contents
List of Contents
Abstract ································································································· i
List of contents ······················································································· ii
List of tables ··························································································· iv
List of figures ·························································································· v
Ⅰ. THEORY
1.1 Electrochemistry ············································································· 1
1.1.1 Electromotive Force ·································································· 1
1.1.2 Electrode Potential ···································································· 1
1.1.3 Energy Storage ········································································ 2
1.2 Battery Theory ··············································································· 3
1.3 Lithium-ion Batteries (LIBs) ······························································· 4
1.3.1 Anode Materials ······································································· 5
1.3.2 Electrolytes ············································································· 6
1.3.3 Solid Electrolyte Interphase (SEI) ·················································· 7
1.3.4 Additives ··············································································· 8
1.3.5 Cathode Materials ····································································· 8
1.5 References ···················································································· 9
Ⅱ. Plastic crystal electrolytes for all-solid-state Li-ion batteries
2.1 Introduction ················································································ 10
2.2 Experimental ··············································································· 11
2.2.1 Materials ············································································· 11
2.2.2 Electrochemical analysis ··························································· 12
2.2.3 Battery performance ································································ 13
2.2.4 Differential scanning calorimeter (DSC) analysis ······························ 14
2.2.5 Galvanostatic deposition ··························································· 14
2.3 Results and discussion ···································································· 14
2.3.1 Electrochemical properties ························································ 14
2.3.2 Battery cell test ······································································ 22
2.4 Conclusions ················································································ 23
2.5 References ·················································································· 24
Summary (in Korean) ·············································································· 27
URI
http://dgist.dcollection.net/common/orgView/200000285745

http://hdl.handle.net/20.500.11750/12002
DOI
10.22677/Theses.200000285745
Degree
Master
Department
Energy Science&Engineering
Publisher
DGIST
Related Researcher
  • 김성균 Kim, Seong Kyun
  • Research Interests Homogeneous Catalysis for organic reactions& polymerizations; High Performance Polymer Synthesis; Organic-Inorganic Hybrid Frameworks
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Department of Energy Science and Engineering Theses Master

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