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首页> 外文期刊>Journal of the European Ceramic Society >Synthesis of SiCNAl(O) pre-alloyed nanopowders by pyrolysis of an aluminosilazane aerosol
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Synthesis of SiCNAl(O) pre-alloyed nanopowders by pyrolysis of an aluminosilazane aerosol

机译:铝硅氮烷气溶胶的热解合成SiCNAl(O)预合金纳米粉体

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A liquid aluminosilazane precursor, with various Al contents, was synthesized by direct reaction between hexamethyldisilazane and trimethy-laluminum at room temperature. Mass spectrometry and Fourier-transform infrared spectroscopy showed respectively a methane evolution and die formation of Al-N bonds. Thermal-spray pyrolysis of this precursor was realized under different conditions: temperature (1200-1400 deg C). pyrolysis atmosphere (Ar, Ar/NH_3) and gaseous flow rate (1 and 3 L min~(-1)). SEM micrographs revealed spherical SiCNAl(O) nanopowders which size (20-180 nm in diameter) depending on the residence time duration of the product in the furnace. Pyrolysis under argon led to a high C content, and then to the presence of free carbon and amorphous SiC phase detected by XRD and NMR analysis. Introduction of ammonia in the pyrolysis atmosphere induced an important decrease of C content in the pre-alloyed nanopowders, correlated with an increase of N and Al. With this process, multielement nanopowders with an adjustable composition exhibit a higher thermal stability than powders processed by laser-spray pyrolysis with an equivalent precursor.
机译:通过在室温下六甲基二硅氮烷与三甲基铝的直接反应合成了具有不同Al含量的液态铝硅氮烷前体。质谱和傅立叶变换红外光谱分别显示甲烷的析出和Al-N键的形成。该前体的热喷雾热解是在不同条件下实现的:温度(1200-1400℃)。热解气氛(Ar,Ar / NH_3)和气体流速(1和3 L min〜(-1))。 SEM显微照片揭示了球形SiCNAl(O)纳米粉,其尺寸(直径为20-180 nm)取决于产品在炉中的停留时间。在氩气下热解导致高C含量,然后通过XRD和NMR分析检测到存在游离碳和无定形SiC相。在热解气氛中引入氨会导致预合金化纳米粉中C含量的大幅下降,这与N和Al的增加有关。通过这种方法,具有可调节成分的多元素纳米粉体比通过使用等效前体的激光喷雾热解处理的粉末具有更高的热稳定性。

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