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首页> 外文期刊>Journal of the European Ceramic Society >Preparation and characterization of mesoporous silicon oxycarbide ceramics without free carbon from polysiloxane
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Preparation and characterization of mesoporous silicon oxycarbide ceramics without free carbon from polysiloxane

机译:无聚硅氧烷游离碳的中孔碳氧化硅陶瓷的制备与表征

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摘要

Mesoporous silicon oxycarbide ceramics without free carbon were prepared by pyrolysis of cross-linked polysiloxane at different temperatures (1300-1450 °C) followed by post treatments. The post treatments comprised two steps (HF etching and oxidation at 650 °C in air). The sample pyrolyzed at 1300 °C after post treatments exhibits the largest specific surface area (SSA) reachi ng up to 204 m~2/g and the biggest total pore volume (0.58 cm~3/g) with an average pore size of 11.4 nm. Increasing pyrolysis temperature will lead a quick decline of SSA and total pore volume. The thermal stability of pore structure of the sample pyrolyzed at 1300 °C with post treatments was investigated in air. The SSA and total pore volume almost keeps the same up to 750 °C, and subsequently decreases with a high speed. The most possible reason is the pores are severely closed by viscous flow of SiO_2 produced from SiC nanocrystallites.
机译:通过在不同温度(1300-1450°C)下热解交联的聚硅氧烷,然后进行后处理,可以制备不含游离碳的中孔碳氧化硅陶瓷。后处理包括两个步骤(HF蚀刻和在650°C的空气中氧化)。后处理后在1300°C下热解的样品显示最大比表面积(SSA)高达204 m〜2 / g,最大总孔体积(0.58 cm〜3 / g),平均孔径为11.4纳米热解温度升高将导致SSA和总孔体积快速下降。在空气中研究了在1300°C下热解后样品的孔结构的热稳定性。 SSA和总孔体积在750°C时几乎保持不变,然后以较高的速度减小。最可能的原因是,由SiC纳米微晶产生的SiO_2的粘性流严重堵塞了孔。

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