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논문 기본 정보

자료유형
학위논문
저자정보

이동희 (인하대학교, 인하대학교 대학원)

지도교수
이근형
발행연도
2018
저작권
인하대학교 논문은 저작권에 의해 보호받습니다.

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이 논문의 연구 히스토리 (2)

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Ion gels are polymer electrolytes consisting of room-temperature ionic liquids and structuring polymers. By incorporating electrical properties of ionic liquids and mechanical strength of polymers, ion gel have attracted great attention as advanced electrolyte materials in many electrochemical fields. To deposit ion gel films on electrochemical devices, various printing methods were developed. This thesis investigates transfer-printed thin-film transistors using triblock copolymer based ion gels as a gate dielectric. In this thesis, p-type transistors, n-type transistors, and complementary inverters using ion gels were demonstrated by using the same process.
In addition, this thesis investigates application of amphiphilic random copolymers as a structuring polymer of ion gels. The random copolymers consist of the same lyophilic and lyophobic blocks used in the triblock copolymers. To compare electrical properties of the random copolymer based ion gel, Thin-film transistors with the random copolymer ion gel were prepared. Overall, this thesis provides an effective way to fabricate electrical and electrochemical circuits employing ion gels.

목차

Abstract 1
Lists of Figures & Tables 2
Chapter1 Introduction 5
1.1 References 7
Chapter2 Experimental Section 11
2.1 Materials 11
2.2 Triblock copolymer synthesis 11
2.3 Ion gel preparation 14
2.4 Impedance spectroscopy 14
2.5 Transfer printing process 15
2.6 Transistor fabricatoin and characterization 15
2.7 References 17
Chapter3 Transfer Printed Triblock Copolymer Ion gel for Thin-Film Transistors 20
3.1 Result and discussion 20
3.1.1 Transfer printing of ion gels 20
3.1.2 Organic P3HT p-type transistors 21
3.1.3 Effect of bending stress on flexibie devices 22
3.1.4 Inorganic ZnO n-type transistors 23
3.1.5 Complementary circuits 24
3.2 Summary 26
3.3 References 27
Chapter4 Application on Random Copolymer Ion Gel 37
4.1 Result and discussion 37
4.1.1 P(S-co-MMA) ion gels 37
4.1.2 Transistor fabrication and characterization 39
4.2 Summay 40
4.3 References 41
Conclusion 46

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