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Facile Synthesis of Ternary Boron Carbonitride Nanotubes

机译:三元碳氮化硼纳米管的简便合成

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摘要

In this study, a novel and facile approach for the synthesis of ternary boron carbonitride (B–C–N) nanotubes was reported. Growth occurred by heating simple starting materials of boron powder, zinc oxide powder, and ethanol absolute at 1150 °C under a mixture gas flow of nitrogen and hydrogen. As substrate, commercial stainless steel foil with a typical thickness of 0.05 mm played an additional role of catalyst during the growth of nanotubes. The nanotubes were characterized by SEM, TEM, EDX, and EELS. The results indicate that the synthesized B–C–N nanotubes exhibit a bamboo-like morphology and B, C, and N elements are homogeneously distributed in the nanotubes. A catalyzed vapor–liquid–solid (VLS) mechanism was proposed for the growth of the nanotubes.
机译:在这项研究中,已报道了一种新颖且简便的合成碳氮化硼(B–C–N)纳米管的方法。通过在氮气和氢气的混合气流下于1150°C加热硼粉,氧化锌粉和无水乙醇的简单起始原料来生长。作为基材,典型厚度为0.05 mm的商用不锈钢箔在纳米管的生长过程中起到了催化剂的额外作用。通过SEM,TEM,EDX和EELS表征纳米管。结果表明,合成的B–C–N纳米管呈现竹子状形态,且B,C和N元素均匀分布在纳米管中。对于纳米管的生长,提出了一种催化的气液固(VLS)机理。

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