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Tunable Synthesis of SiC/SiO2 Heterojunctions via Temperature Modulation

机译:通过温度调节可调谐合成SiC / SiO2异质结

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摘要

A large-scale production of necklace-like SiC/SiO2 heterojunctions was obtained by a molten salt-mediated chemical vapor reaction technique without a metallic catalyst or flowing gas. The effect of the firing temperature on the evolution of the phase composition, microstructure, and morphology of the SiC/SiO2 heterojunctions was studied. The necklace-like SiC/SiO2 nanochains, several centimeters in length, were composed of SiC/SiO2 core-shell chains and amorphous SiO2 beans. The morphologies of the as-prepared products could be tuned by adjusting the firing temperature. In fact, the diameter of the SiO2 beans decreased, whereas the diameter of the SiC fibers and the thickness of the SiO2 shell increased as the temperature increased. The growth mechanism of the necklace-like structure was controlled by the vapor-solid growth procedure and the modulation procedure via a molten salt-mediated chemical vapor reaction process.
机译:通过熔融盐介导的化学气相反应技术,无需金属催化剂或流动气体,即可大规模生产项链状SiC / SiO2异质结。研究了烧成温度对SiC / SiO2异质结相组成,微观结构和形貌演变的影响。长度为几厘米的项链状SiC / SiO2纳米链由SiC / SiO2核-壳链和无定形SiO2豆组成。可以通过调节烧成温度来调节所制备产品的形态。实际上,SiO 2豆的直径减小,而SiC纤维的直径和SiO 2壳的厚度随着温度的升高而增加。项链状结构的生长机理通过气固生长过程和通过熔融盐介导的化学气相反应过程的调节过程来控制。

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