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首页> 外文期刊>Journal of Materials Science >Surface changes during pyrolytic conversion of hybrid materials to oxycarbide glasses
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Surface changes during pyrolytic conversion of hybrid materials to oxycarbide glasses

机译:杂化材料热解转化为碳氧化物玻璃期间的表面变化

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Hybrid materials from TEOS–TBOT–PDMS have been prepared and pyrolyzed between 400 and 1,000 °C. The surface characteristics of this type of materials have been studied by nitrogen adsorption, mercury intrusion porosimetry, and inverse gas chromatography at infinite dilution (IGC). IGC has been used for obtaining the dispersive and acid–base surface energies of the different materials. The specific surface areas and pore volumes of the studied samples have resulted to increase the pyrolysis temperatures ranging between 400 and 600 °C and decrease for higher temperatures. On the other hand, surface energies increase when the materials are pyrolyzed between 400 and 800 °C and then decrease after pyrolysis at 1,000 °C. When the material is pyrolyzed at the highest temperature, the surface energies are close to that of typical glasses. It has been observed that pyrolyzing at 800 °C the material has the highest values of both components of the surface free energy (dispersive and specific). The surface energy–pyrolysis temperature variation does not correspond to the formation of micropores in the material during the pyrolysis process. Therefore, it has been assumed that high energy active sites must be formed on the surface when the materials are pyrolyzed at 800 °C.
机译:已经制备了TEOS–TBOT–PDMS的杂化材料,并在400至1,000°C的温度下进行了热解。已经通过氮气吸附,压汞法和无限稀释反向气相色谱法(IGC)研究了这类材料的表面特性。 IGC已用于获得不同材料的色散和酸碱表面能。所研究样品的比表面积和孔体积导致热解温度升高,介于400至600°C之间,而高温则降低。另一方面,当材料在400至800°C之间热解时,表面能增加,然后在1,000°C时热解后,表面能下降。当材料在最高温度下热解时,表面能接近于典型玻璃的表面能。已经观察到,在800℃下热解该材料具有表面自由能的两种成分(分散性和比值)的最高值。表面能-热解温度的变化与热解过程中材料中微孔的形成并不对应。因此,已经假定当材料在800°C时热解时必须在表面上形成高能活性位点。

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