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Solution-Based Carbohydrate Synthesis of Individual Solid, Hollow, and Porous Carbon Nanospheres Using Spray Pyrolysis

机译:基于溶液的碳水化合物利用喷雾热解法合成单个固体,中空和多孔碳纳米球

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摘要

A facile and scalable solution-based, spray pyrolysis synthesis technique was used to synthesize individual carbon nanospheres with specific surface area (SSA) up to 1106 m~2/g using a novel metal-salt catalyzed reaction. The carbon nanosphere diameters were tunable from 10 nm to several micrometers by varying the precursor concentrations. Solid, hollow, and porous carbon nanospheres were achieved by simply varying the ratio of catalyst and carbon source without using any templates. These hollow carbon nanospheres showed adsorption of to 300 mg of dye per gram of carbon, which is more than 15 times higher than that observed for conventional carbon black particles. When evaluated as supercapacitor electrode materials, specific capacitances of up to 112 F/g at a current density of 0.1 A/g were observed, with no capacitance loss after 20 000 cycles.
机译:利用一种新颖且可扩展的基于溶液的喷雾热解合成技术,通过新颖的金属盐催化反应,合成了比表面积(SSA)高达1106 m〜2 / g的单个碳纳米球。通过改变前体浓度,碳纳米球直径可从10 nm调整到几微米。通过简单地改变催化剂和碳源的比例而不使用任何模板即可获得固体,中空和多孔的碳纳米球。这些中空的碳纳米球的吸附量为每克碳吸附300毫克染料,比常规炭黑颗粒的吸附量高15倍以上。当评估为超级电容器电极材料时,在0.1 A / g的电流密度下观察到的比电容高达112 F / g,在20 000次循环后没有电容损失。

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