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New insights into the nanostructure of high-C SiOC glasses obtained via polymer pyrolysis

机译:通过聚合物热解获得的高碳SiOC玻璃纳米结构的新见解

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High-C SiOC glasses have been synthesised starting from linear and cyclic SiH-containing polysiloxanes through sililisation. The amount of C has been increased by using divinylbenzene as a crosslinking agent. SiOC glasses have been obtained by pyrolysis in inert atmosphere at temperatures ranging from 1000 to 1400°C. The nanostructure of the SiOC glasses was investigated using a multiple technique approach on the SiOC glasses before and after HF etching. The acid attack dissolves the silica-based nanoclusters and thus provides indirect information on their size and quantity. HF etched SiOC glasses are highly porous with surface areas up to 460 m2/g and pore sizes in the range 3-4 nm. Finally, the study clearly shows that the structure of the precursor has a strong impact on the nanostucture of the final glass.
机译:已经从硅烷基的线性和环状含SiH的聚硅氧烷开始合成了高C SiOC玻璃。通过使用二乙烯基苯作为交联剂增加了C的量。通过在惰性气氛中在1000至1400℃的温度下热解获得SiOC玻璃。在HF蚀刻之前和之后,使用多种技术对SiOC玻璃进行了研究。酸侵蚀会溶解基于二氧化硅的纳米团簇,从而提供有关其大小和数量的间接信息。 HF蚀刻的SiOC玻璃是高度多孔的,表面积高达460 m2 / g,孔径在3-4 nm。最后,研究清楚地表明,前体的结构对最终玻璃的纳米结构有很大的影响。

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