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실란화 반응에 의한 종이 표면의 소수성 자기조립 단분자막 형성
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  • 실란화 반응에 의한 종이 표면의 소수성 자기조립 단분자막 형성
저자명
오민정,이형,백기현,Oh. Min-Jeong,Lee. Hyoung,Paik. Ki-Hyon
간행물명
펄프 종이기술
권/호정보
2010년|42권 1호|pp.64-73 (10 pages)
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한국펄프종이공학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

This study was conducted to modify the surface properties of papers by formation of hydrophobic self-assembled monolayer(SAM) on paper surface with silanes. A base paper I(0.5% AKD) and base paper II(1.0-1.5% AKD) were reacted with silanes(PFDTES, DMDCS, MODDCS) by immersion method and vapor deposition method. Hydrophobic SAMs(contact angle value>$120^{circ}C$) were obtained on all papers after treatment with $10^{mu}l$ PFDTES for 15min, with $50^{mu}l$ DMDCS for 30min, with $50^{mu}l$ MODDCS for 300min. When applying PFDTES to paper surface, lower silane concentration and shorter reaction time were required, whereas MODDCS with long alkyl chain required the longest reaction time of 300min. The st$ddot{o}$ckight sizing degree of silane treated papers were increased between 105sec(base paper I) and 130sec(base paper II). The wet tensile strength of PFDTES-treated base papers(I, II) increased by 10-34% after SAM formation. However, the wet tensile strength of the DMDCS-treated base paper(I) was found to decrease from 0.067kN/m to 0.038kN/m; this may due to the cellulose degrading as a result of generated hydrogen chloride when hydroxyl group of cellulose were reacted with DMDCS. No apparent changes of PPS roughness on silane-treated papers are observed. The ATR-IR spectrum showed absorption peak located at 465 and 1200cm-1 which can be assigned to the Si-O-C asymmetric stretching and Si-O-C bonds, respectively.