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首页> 外文期刊>Journal of the European Ceramic Society >Influence of carbon on the synthesis of AlN powder from combustion synthesis precursors
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Influence of carbon on the synthesis of AlN powder from combustion synthesis precursors

机译:碳对燃烧合成前驱体合成AlN粉末的影响

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摘要

AlN powders were synthesized by carbothermal reduction of combustion synthesis precursors. Water-soluble organics and carbon black were used as carbon sources. The effects of carbon on the synthesis of AlN powders were studied. Results showed that AlN powders were synthesized directly from gamma-Al_2O_3 without gamma-Al_2O_3 to (alpha-Al_2O_3 phase transition when water-soluble organics were used as carbon sources, and the nitridation of the precursors could be completed at 1400 deg C. However, AlN powders were synthesized from the nitridation of alpha-Al_2O_3 when carbon black was used as carbon source, and the reaction temperature for a complete conversion increased to 1500 deg C. The particles of AlN powders synthesized with water-soluble organics was smaller than the particles of AlN powders synthesized with carbon black and their particle size distribution was sharper. The specific surface area of synthesized AlN powders increased with the increase of carbon content in the precursors.
机译:通过碳热还原燃烧合成前体来合成AlN粉末。水溶性有机物和炭黑被用作碳源。研究了碳对AlN粉体合成的影响。结果表明,当使用水溶性有机物作为碳源时,AlN粉末直接由无γ-Al_2O_3的γ-Al_2O_3合成为(α-Al_2O_3)相转变,前体的氮化可在1400℃完成。以炭黑为碳源时,通过α-Al_2O_3的氮化反应合成AlN粉末,完全转化的反应温度提高到1500℃。水溶性有机物合成的AlN粉末的颗粒小于颗粒。炭黑合成的AlN粉的粒度分布较锐利,合成的AlN粉的比表面积随前驱体中碳含量的增加而增加。

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