본 연구에서는 전자빔을 이용하여 poly(dimethyl siloxane)(PDMS)을 개질하였으며 그 특성 변화를 분석하였다. PDMS 시트를 기존의 열경화법을 통해 제조한 후 20에서 200 kGy의 흡수선량P로 전자빔을 조사하였고, 조사된 시트들의 특성을 팽윤도 및 접촉각 측정, 만능시험분석기(UTM), 열중랑분석기(TGA), X선 광전자 분광기(XPS)들을 이용해 분석하였다. 팽윤도 측정, UTM 및 TGA 결과, 전자빔 조사에 의해 PDMS 시트의 가교 밀도가 증가함에 따라 조사된 PDMS 시트의 팽윤도는 순수한 것에 비해 최대 24%까지 감소하였고 압축강도와 열분해온도는 순수한 것에 대비 각각 최대 2.5 MPa와 $10^{\circ}C$까지 증가함을 확인하였다. 또한, 접촉각 측정과 XPS 분석 결과를 토대로 전자빔 조사에 의한 산화 반응에 의하여 PDMS 표면에 친수성 관능기들이 형성되기 때문에 PDMS 표면의 젖음성은 순수한 것에 비해 최대 24%까지 향상됨을 확인하였다.
본 연구에서는 전자빔을 이용하여 poly(dimethyl siloxane)(PDMS)을 개질하였으며 그 특성 변화를 분석하였다. PDMS 시트를 기존의 열경화법을 통해 제조한 후 20에서 200 kGy의 흡수선량P로 전자빔을 조사하였고, 조사된 시트들의 특성을 팽윤도 및 접촉각 측정, 만능시험분석기(UTM), 열중랑분석기(TGA), X선 광전자 분광기(XPS)들을 이용해 분석하였다. 팽윤도 측정, UTM 및 TGA 결과, 전자빔 조사에 의해 PDMS 시트의 가교 밀도가 증가함에 따라 조사된 PDMS 시트의 팽윤도는 순수한 것에 비해 최대 24%까지 감소하였고 압축강도와 열분해온도는 순수한 것에 대비 각각 최대 2.5 MPa와 $10^{\circ}C$까지 증가함을 확인하였다. 또한, 접촉각 측정과 XPS 분석 결과를 토대로 전자빔 조사에 의한 산화 반응에 의하여 PDMS 표면에 친수성 관능기들이 형성되기 때문에 PDMS 표면의 젖음성은 순수한 것에 비해 최대 24%까지 향상됨을 확인하였다.
In this paper, poly (dimethyl siloxane) (PDMS) was modified using electron beam irradiation and its property was investigated. PDMS sheets prepared using a conventional thermal curing method were irradiated by electron beams at absorbed doses between 20 and 200 kGy and their properties were characte...
In this paper, poly (dimethyl siloxane) (PDMS) was modified using electron beam irradiation and its property was investigated. PDMS sheets prepared using a conventional thermal curing method were irradiated by electron beams at absorbed doses between 20 and 200 kGy and their properties were characterized using swelling degree and contact angle measurements, universal testing machine (UTM), thermogravimetric analyzer (TGA), and X -ray photoelectron spectrometer (XPS). The results of the swelling degree measurements, UTM, and TGA revealed that the swelling degree of the irradiated PDMS sheets was reduced down to 24% in comparison to the control sheet, and their compression strength and thermal decomposition temperature increased up to maximum 2.5 MFa and $10^{\circ}C$, respectively, due to the increase in crosslinking density by irradiation. In addition, on the basis of the results of contact angle measurements and XPS, the wettability of the PDMS sheets was enhanced up to 24% owing to the generation of hydrophilic functional groups on the PDMS surface by oxidation during electron beam irradiation.
In this paper, poly (dimethyl siloxane) (PDMS) was modified using electron beam irradiation and its property was investigated. PDMS sheets prepared using a conventional thermal curing method were irradiated by electron beams at absorbed doses between 20 and 200 kGy and their properties were characterized using swelling degree and contact angle measurements, universal testing machine (UTM), thermogravimetric analyzer (TGA), and X -ray photoelectron spectrometer (XPS). The results of the swelling degree measurements, UTM, and TGA revealed that the swelling degree of the irradiated PDMS sheets was reduced down to 24% in comparison to the control sheet, and their compression strength and thermal decomposition temperature increased up to maximum 2.5 MFa and $10^{\circ}C$, respectively, due to the increase in crosslinking density by irradiation. In addition, on the basis of the results of contact angle measurements and XPS, the wettability of the PDMS sheets was enhanced up to 24% owing to the generation of hydrophilic functional groups on the PDMS surface by oxidation during electron beam irradiation.
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제안 방법
In this research, PDMS sheets were irradiated using electron beams to improve their physicochemical properties. PDMS sheets, prepared using a conventional thermal curing method, were modified by electron beam irradiation under various absorbed doses and their properties were investigated.
In this work, PDMS was successfully modified using electron beam irradiation. The swellability of the irradiated PDMS sheets was reduced and their compressive strengths and thermal decomposition temperatures were improved m comparison to those of the control sheet due to a ftuther increase in t.
To investigate the effects of the mixing ratio of the base resin/curing agent on the swellability and wettability of PDMS sheets, the swelling degree measurement and water contact angle analysis were carried out and the results are shown in Figure 1. The swelling degree of the PDMS sheets varied from 84 to 145% based on the mixing ratio of the base resin/curing agent, and was the lowest at a mixing ratio of 10:l, which was proposed by Dow Coming.
(curing agent) in another kit. To prepare PDMS sheets, the base resin and its curing agent were well-mixed into different mixing weight ratios of 5:1, 10:l, and 15:1. The resulting mixture was degassed for 15 min to remove air bubbles, poured into a customized mold (150 mm (L) x 150 mm (W)><3 mm (H)), and then cured at 100 ℃ for 2 h to complete the crosslinking.
Water contact angle measurements of the control and irradiated PDMS sheets were carried out using a contact angle analyzer (Pheonix 300, Surface Electro Optics Company). Redistilled water (10 μL) was gently placed on the samples.
참고문헌 (16)
Y. Wu, Y. Huang, and H. Ma, J. Am. Chem. Soc., 129, 7226 (2007).
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