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Copper induced hollow carbon nanospheres by arc discharge method: controlled synthesis and formation mechanism

机译:电弧放电法铜诱导空心碳纳米球的受控合成与形成机理

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摘要

Hollow carbon nanospheres with controlled morphologies were synthesized via the copper-carbon direct current arc discharge method by alternating the concentrations of methane in the reactant gas mixture. A self-healing process to keep the structural integrity of encapsulated graphitic shells was evolved gradually by adding methane gas from 0% to 20%. The outer part of the coated layers expanded and hollow nanospheres grew to be large fluffy ones with high methane concentrations from 30% to 50%. A self-repairing function by the reattachment of broken graphitic layers initiated from near-electrode space to distance was also distinctly exhibited. By comparing several comparable metals (e.g. copper, silver, gold, zinc, iron and nickel)-carbon arc discharge products, a catalytic carbon-encapsulation mechanism combined with a core-escaping process has been proposed. Specifically, on the basis of the experimental results, copper could be applied as a unique model for both the catalysis of graphitic encapsulation and as an adequate template for the formation of hollow nanostructures.
机译:通过改变反应气体混合物中甲烷的浓度,通过铜-碳直流电弧放电法合成了具有可控形态的空心碳纳米球。通过添加0%至20%的甲烷气体,逐渐发展了一种自修复工艺,可保持封装的石墨壳的结构完整性。包衣层的外部膨胀,空心纳米球长成蓬松的大球体,甲烷浓度从30%增至50%。还清楚地显示了通过从近电极空间开始到距离的重新附着破裂的石墨层而实现的自我修复功能。通过比较几种可比较的金属(例如铜,银,金,锌,铁和镍)-碳电弧放电产物,已经提出了一种与芯部逸出工艺相结合的催化碳包封机理。具体而言,根据实验结果,铜既可以用作石墨封装催化的独特模型,又可以用作中空纳米结构形成的适当模板。

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