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Preparation of nanoporous carbon microspheres by subcritical water carbonization and electrocapacitive study

机译:亚临界水碳化法制备纳米多孔碳微球及电容量研究

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摘要

In this work, sugar-derived Carbon microspheres (CMSs) with diameters in the range of 5–10 m and uniform nanopores were prepared using the subcritical water carbonization method, followed by microwave-assisted KOH activation. The carbonization was conducted at 3 MPa and moderate temperatures (150–170◦C) in subcritical water, which is a green dehydrating agent. The formation of the\udCMSs from a sugar solution under subcritical water conditions followed a radical-catalysed emulsion polymerization mechanism. The specific surface area and pore volume of the CMSs were found to increase with increasing the mass ratio of KOH over carbon up to 1:1. Electrocapacitive results showed that a sample prepared at a KOH to carbon ratio of 1:1 and microwave irradiation level of 70% possessed the highest specific capacitance (about 179.2F/g) at a current density of 1A/g and excellent cycling performance over 1000 charging/discharging cycles without significantly loss in capacitance. The specific capacitance and capacitive retention of this electrode are comparable to that of an electrode prepared from commercial YP-80F activated carbon
机译:在这项工作中,使用亚临界水碳化法制备了直径在5-10 m范围内且均一的纳米孔的糖衍生碳微球(CMS),然后进行了微波辅助的KOH活化。碳化是在3 MPa和中等温度(150–170°C)下在绿色的脱水剂亚临界水中进行的。在亚临界水条件下由糖溶液形成\ udCMSs遵循自由基催化的乳液聚合机理。发现CMS的比表面积和孔体积随着KOH与碳的质量比增加至1:1而增加。电电容结果表明,在KOH与碳的比例为1:1且微波辐射水平为70%的情况下,样品在电流密度为1A / g时具有最高的比电容(约179.2F / g),并且在1000倍以上的循环性能优异充电/放电循环,电容没有明显损失。该电极的比电容和电容保持率与由商业YP-80F活性炭制备的电极相当

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