4.7 Article

Crystallization Behavior and Controlling Mechanism of Iron-Containing Si-C-N Ceramics

期刊

INORGANIC CHEMISTRY
卷 48, 期 21, 页码 10078-10083

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AMER CHEMICAL SOC
DOI: 10.1021/ic900934u

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  1. Alexander von Humboldt (AvH) foundation
  2. Fonds der Chemischen Industrie, Frankfurt, Germany

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The crystallization behavior and controlling mechanism of the Si-Fe-C-N system based on polymer-derived SiCN ceramic filled with iron metal powder has been studied. The composite preparation conditions allow the formation of a random distribution of metallic particles in the polymer matrix volume for the Si-C-N system. Pyrolysis of the composite material at 1100 degrees C indicates the presence of one crystalline phase Fe(3)Si. While the sample pyrolyzed at 1200 degrees C reveals the formation of both Fe(3)Si and Fe(5)Si(3) phases, a crystallization of beta-SiC is additionally observed by increasing the temperature up to 1300 degrees C. The propensity for the formation of SiC is due to the presence of Fe(5)Si(3), where a solid-liquid-solid (SLS) growth mechanism was suggested to occur. X-ray diffraction (XRD), scanning electron microscopy (SEM), differential thermal analysis (DTA), and thermal gravimetric analysis with mass spectroscopic detection (TGA-MS) were employed to investigate the crystallization behavior of the Si-Fe-C-N system.

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