封面
版权信息
编委会
前言
Preface
1 CZTSe薄膜太阳能电池关键材料研究
摘要
1 绪论
1.1 研究背景
1.2 太阳能电池的工作原理
1.3 太阳能电池分类
1.4 CZT(S,Se)太阳能电池的概况
1.5 研究内容
2 CZTSe薄膜太阳能电池的数值模拟
2.1 CZTSe太阳能电池的数值模拟模型建立
2.2 CZTSe薄膜太阳能电池特性的数值模拟
2.3 本章小结
3 IMO透明电极薄膜的实验研究
3.1 IMO薄膜的研究现状和主要制备方法
3.2 IMO薄膜的实验制备
3.3 IMO薄膜性质的测试表征
3.4 本章小结
4 CZTSe吸收层薄膜的实验研究
4.1 CZT(S,Se)薄膜的研究现状和主要制备方法
4.2 CZTSe薄膜的制备
4.3 CZTSe薄膜的测试表征
4.4 本章小结
5 总结与展望
5.1 总结
5.2 展望
参考文献
2 阳极支撑固体氧化物燃料电池电化学性能与稳定性测试
摘要
1 绪论
1.1 燃料电池概述
1.2 固体氧化物燃料电池简介
1.3 SOFC衰减机理与稳定性测试
1.4 研究背景和意义
2 阴极扩散阻隔层对电池寿命的影响
2.1 SOFC纽扣电池
2.2 测试设备与测试过程
2.3 测试结果与分析
2.4 本章小结
3 大面积单电池的性能表征和衰减分析
3.1 SOFC单电池
3.2 测试设备与测试过程
3.3 结果与讨论
3.4 本章小结
4 外气道电堆的性能表征与结果分析
4.1 电堆设计
4.2 电堆测试设备与测试过程
4.3 电堆性能和可靠性
4.4 电堆测试后的简单分析
5 总结与展望
5.1 总结
5.2 展望
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参考文献
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3 一维二氧化钛纳米材料合成及应用
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摘要
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1 绪论
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1.1 引言
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1.2 研究背景与意义
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1.3 一维二氧化钛纳米材料的研究现状
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1.4 主要研究内容
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2 二氧化钛纳米棒组装布状薄膜的合成、表征以及基本应用
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2.1 引言
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2.2 实验部分
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2.3 实验结果与讨论
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2.4 本章小结
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3 基于二氧化钛布状薄膜的光电器件结构优化
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3.1 引言
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3.2 实验部分
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3.3 实验结果与讨论
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3.4 本章小结
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4 基于二氧化钛纳米棒/碳布复合材料的锂离子电池
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4.1 引言
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4.2 实验部分
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4.3 锂离子电池测试结果分析
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4.4 本章小结
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5 总结与展望
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5.1 总结
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5.2 展望
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参考文献
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4 层层自组装制备MoO2纳米复合材料及其储锂性能研究
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摘要
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1 绪论
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1.1 锂离子电池的概念和工作原理
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1.2 锂离子电池电极材料
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1.3 层层自组装方法在电极材料制备中的应用
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1.4 研究内容
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2 实验方法
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2.1 化学试剂和实验设备
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2.2 材料表征及电化学测试
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3 LBL自组装方法制备MoO2/CNTs负极材料
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3.1 引言
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3.2 实验过程
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3.3 结果分析及讨论
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3.4 本章小结
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4 LBL自组装制备MoO2/石墨烯多孔薄膜
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4.1 引言
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4.2 实验过程
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4.3 结果分析和讨论
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4.4 本章小结
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5 总结与展望
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参考文献
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5 Preparation and Characterization of Key Materials for CZTSe Thin Film Solar Cell Application
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Abstract
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Symbols and Abbreviations
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1 Introduction
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1.1 Research Background of Thin Film Solar Cell
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1.2 Aims of the Research
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1.3 Thesis Organization
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2 Literature Review
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2.1 Literature Review of IMO as TCO
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2.2 Literature Review of CZTSSe as Absorber
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3 Experimental
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3.1 Fabrication Process
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3.2 Characterization Method
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4 Results and Discussions
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4.1 Results and Discussion of IMO Thin Films
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4.2 Result and Discussion of CZTSe Thin Films
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5 Summary and Prospect
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5.1 Summary
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5.2 Prospect
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References
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6 Performance and Stability Tests of Anode—supported Planar SOFCs
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Abstract
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Notation
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Acronyms and Abbreviations
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1 Introduction
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1.1 Thesis Statement and Significance of the Research
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1.2 General Introduction to an SOFC and Its Electrical Characteristics
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1.3 Literature Review
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1.4 Thesis Main Contents
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2 Testing and Comparison of Button Cells
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2.1 Two Button Cells
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2.2 Testing Equipment and Procedures
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2.3 Testing Results
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2.4 Summary of This Chapter
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3 Testing and Post-test Analysis of Single Cells
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3.1 Two Single Repeating Units
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3.2 Testing Equipment and Procedures
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3.3 Results and Discussion
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3.4 Summary of This Chapter
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4 Testing of an External-manifold Stack
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4.1 Stack Design
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4.2 Stack Testing Equipment and Procedures
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4.3 Performance and Durability
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4.4 Simple Post-test Analysis of the Stack
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5 Summary and Prospect
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5.1 Summary
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5.2 Prospect
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References
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7 1D Nanostructure Titanium Dioxide:Synthesis and Applications
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Abstract
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Symbols and Abbreviations
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1 Thesis Statement and Significance of the Research
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2 Literature Review
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2.1 Methods for 1D Nanostructure TiO2Synthesizing
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2.2 Applications for 1D Nanostructure TiO2
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3 Transferable and Flexible Nanorods-Assembled TiO2Cloths for Dye-Sensitized Solar Cells,Photodetectors and Photocatalysts
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3.1 Experimental Section
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3.2 Results and Dissussion
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3.3 Chapter Conclusion
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4 Multilayer TiO2 Nanorod Cloth/nanorod Array Electrode for Dye-sensitized Solar Cells and Self-powered UV Detectors[50]
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4.1 Experimental Section
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4.2 Results and Discussion
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4.3 Chapter Conclusion
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5 TiO2 Nanorods/C Cloth Based Lithium-ion Battery
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5.1 Experimental Section
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5.2 Testing of Lithium-ion Battery
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5.3 Chapter Conclusion
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6 Conclusion
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References
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8 Investigation of SmxSr(1-x)MnO3 as A Potential Cathode for IT-SOFC
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Abstract
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1 Introduction
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1.1 Fuel Cells
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1.2 Solid Oxide Fuel Cell
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1.3 Cathode Materials for Solid Oxide Fuel Cell
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1.4 Scope of This Work
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2 Experimental Procedures
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2.1 Powder Preparation
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2.2 Half Cell Fabrication
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2.3 Characterization Techniques
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2.4 Electrical Conductivity Measurement:Four Probe Method
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2.5 Electrochemical Performance Evaluation
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3 Results and Discussion
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3.1 Preparation of SSM Powders
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3.2 Electrical Conductivity Test
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3.3 Thermal Expansion Coefffcient
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3.4 Chemical Compatibility with YSZ
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3.5 SEM Analysis
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3.6 Electrochemical Analysis
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4 Conclusion
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References
更新时间:2021-10-22 15:51:44