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SiOC ceramic with high excess free carbon

机译:具有高过量游离碳的SiOC陶瓷

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摘要

The correlation between microstructure evolution and increasing processing temperature of a polymer-derived SiOC ceramic with a high volume fraction of free carbon was studied by transmission electron microscopy (TEM). The high carbon content of the SiOC ceramic was achieved by crosslinking the starting precursor polyhydridomethylsiloxane (PHMS) with divinylbenzene (DVB). Focus of the TEM characterization was the evolution of the carbon phase upon pyrolysis at 1000 deg C and after additional heat treatment at 1450 deg C. Although a continuous structural rearrangement within the bulk SiOC matrix was observed with raising temperature, the sample annealed at 1450 deg C remained predominantly amorphous, with the exception of a percolation network of turbostratic carbon and a slight precipitation of nanosized SiC particles. The microanostructure observed in this sample upon thermal treatment at high-temperature suggests a phase separation in small SiO_4- and SiC_4-rich regions encapsulated by carbon. This specific phase distribution is consistent with the exceptional thermo-mechanical properties reported for similar high C-content SiOC materials.
机译:通过透射电子显微镜(TEM)研究了具有高游离碳含量的聚合物衍生的SiOC陶瓷的微观结构演变与升高的加工温度之间的相关性。通过将起始前体聚氢甲基硅氧烷(PHMS)与二乙烯基苯(DVB)交联,可以实现SiOC陶瓷的高碳含量。 TEM表征的重点是在1000摄氏度热解后和在1450摄氏度进行进一步热处理后碳相的演变。尽管随着温度升高,在整体SiOC基质中观察到连续的结构重排,但样品在1450摄氏度退火C仍主要为非晶态,除了透层碳的渗透网络和纳米级SiC颗粒的少量沉淀。该样品在高温下进行热处理后观察到的微观/纳米结构表明,在被碳包裹的小的SiO_4和SiC_4富集区域中存在相分离。这种特定的相分布与报道的类似高C含量SiOC材料的优异热机械性能一致。

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