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논문 기본 정보

자료유형
학위논문
저자정보

이봄이 (공주대학교, 공주대학교 대학원)

지도교수
김연철
발행연도
2015
저작권
공주대학교 논문은 저작권에 의해 보호받습니다.

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이 논문의 연구 히스토리 (2)

초록· 키워드

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The purposes of this thesis is to study on the GO dispersion of polycarbonate/graphene oxide (GO) composites. PC/GO composites were prepared by using a twin screw extruder at 240, 260, and 280 ℃ after solution mixing with chloroform, and then chemical reactions between PC and GO were investigated. The chemical reaction degree of PC/GO composites with GO reduction time was confirmed by C-H stretching peak at 3000 cm-1 and the chemical reaction degree decreased with GO reduction time. The scanning electron microscope (SEM) photos were not proper method for measuring the GO dispersion of PC/GO composites because the textures confined to minor regions and were not clear. The rheological properties is one of the methods measuring the inorganic filler dispersion of polymer composites. The slope for storage (G’)-loss (G") modulus plot decrease with an increase in heterogeneous property of the polymer melts. So we can check the GO dispersion of the PC/GO composites using by the slop for G’-G” plot. According to the G’-G" slopes for PC/GO composite with reduction time, GO was well dispersed within PC matrix when the reduction time decreased. It was re-confirmed by atomic force microscope (AFM) results. Based on the degradation temperature by TGA, the G’-G” slopes, and surface roughness by AFM, the branched PC was better than linear PC for the GO dispersion. The fact was confirmed by stress-strain curve that the Young’s modulus increased with the improvement of GO dispersion. In order to check the effect of manufacturing method on the GO dispersion, three methods were tried. First is in-situ PC polymerization with GO and second is in-situ PC polymerization with modified GO-COCl. The final PC/GO composites were fabricated by a twin-screw extruder at 260 ℃ using the above two synthesized PC/GOs. The G’-G" slop and AFM results showed that the GO of in-situ PC/GO composite was well dispersed than that of in-situ PC/GO-COCl composite.

목차

Ⅰ. 서론 1
Ⅱ. 이론적 배경 3
Ⅲ. 용액 · 용융혼합시 PC/GO 또는 RGO의 화학반응 및 PC/GO 복합체의 열환원 연구 14
1. 서론 14
2. 연구방법 15
2-1 재료 15
2-2 PC/GO와 PC/RGO 복합체 제조 15
2-3 측정방법 16
3. 결과 및 고찰 18
3-1 GO의 환원정도에 따른 PC-GO의 화학결합분석 18
3-2 열처리 조건에 따른 PC/GO 복합체의 GO 열환원 분석 21
3-3 PC/GO 복합체의 유변학적 특성을 이용한 GO의 분산성
분석 23
3-4 PC/GO 복합체의 기계적 물성 26
4. 요약 27
Ⅳ. PC 분자구조 및 PC/GO 복합체의 제조방법에 따른 GO 분산성 연구 28
1. 서론 28
2. 연구방법 29
2-1 재료 29
2-2 GO-COCl 제조 29
2-3 PC/GO 복합체 제조 및 PC 합성 30
2-4 측정 방법 32
3. 결과 및 고찰 33
3-1 선형 또는 분지형 PC를 이용한 PC/GO 복합체의 GO의
분산성 33
3-2 PC/GO 복합체 제조방법에 따른 GO 분산성 39
4. 요약 45
Ⅴ. 결론 46
Ⅵ. 참고문헌 48
ABSTRACT 53

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