Carbon and copper nanostructured materials syntheses by plasma discharge in a supercritical fluid environment

Carbon and copper nanostructured materials syntheses by plasma discharge in a supercritical fluid environment
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超临界流体环境下等离子体放电合成碳和铜纳米结构材料

DOI:
10.1039/b402653e
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发表时间:
2004
影响因子:
--
通讯作者:
K. Terashima
K. Terashima
中科院分区:
--
文献类型:
--
作者:
Tsuyohito Ito;K. Katahira;Y. Shimizu;T. Sasaki;N. Koshizaki;K. Terashima

文献摘要

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关于排放量(或排放等离子)在超临界二氧化碳环境中的第一份报告,描述了纳米结构材料的简单生成,例如碳纳米管,纳米植物学和铜纳米结构材料。碳纳米结构材料由超临界二氧化碳也作为原材料合成。关于铜纳米结构材料的合成,与气态环境的比较表明,在具有高脱离能力的超临界二氧化碳环境中产生排放的优点。没有高度升高的环境温度,该过程可以与超临界流体提供的优点相结合。
This first report on applications of discharges (or discharge plasma) in a supercritical carbon dioxide environment describes simple generation of nanostructured materials such as carbon nanotubes, nanopolyhedra, and copper nanostructured materials. Carbon nanostructured materials are synthesized by supercritical carbon dioxide also as a raw material. Regarding copper nanostructured materials synthesis, comparison with a gaseous environment indicates one merit of generating discharges in a supercritical carbon dioxide environment with high-dissolving power. Without highly elevated environmental temperature, this process may be combined with merits offered by supercritical fluids.