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首页> 外文期刊>Journal of the European Ceramic Society >Thermal decomposition of carbon-rich polymer-derived silicon carbonitrides leading to ceramics with high specific surface area and tunable micro- and mesoporosity
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Thermal decomposition of carbon-rich polymer-derived silicon carbonitrides leading to ceramics with high specific surface area and tunable micro- and mesoporosity

机译:富含碳的聚合物衍生的碳氮化硅的热分解产生具有高比表面积和可调的微孔和中孔性的陶瓷

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Herein we report on the thermal decomposition of SiCN polymer-derived ceramics leading to materials with high specific surface area and defined pore sizes. The ceramics were obtained by means of pyrolysis of a carbon-rich poly(diphenylsilylcarbodiimide) precursor and by varying the thermolysis parameters, namely temperature, annealing time and using additional annealing steps. The thermal decomposition of SiCN ceramics is correlated with the carbothermal reaction of amorphous silicon nitride phase with excess carbon and this detrimental event leads to high specific surface area up to 568 m~2 g~(-1) and micro- and mesopores formation in these materials. High-resolution TEM investigations have confirmed that the pores are embedded only in the carbon phase. Moreover, the relationship between the pore sizes and the organization of free carbon phase is discussed.
机译:在这里,我们报道了SiCN聚合物衍生的陶瓷的热分解,导致材料具有高的比表面积和确定的孔径。陶瓷是通过热解富含碳的聚(二苯基甲硅烷基碳二亚胺)前体并通过改变热解参数,即温度,退火时间和使用额外的退火步骤而获得的。 SiCN陶瓷的热分解与非晶态氮化硅相与过量碳的碳热反应有关,这种有害事件导致高达568 m〜2 g〜(-1)的高比表面积,并在其中形成微孔和中孔材料。高分辨率TEM研究已经证实,孔仅埋在碳相中。此外,讨论了孔径与游离碳相组织之间的关系。

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