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Microwave synthesis : characterization and electrochemical properties of amorphous activated carbon-MnO2 nanocomposite electrodes

机译:微波合成:非晶态活性炭-mnO2纳米复合电极的表征和电化学性质

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摘要

The green chemistry route (Microwave) has been used to produce nanocomposite materials based onactivated carbon (AC) and manganese (Mn) oxide nanostructures. XRD analysis revealed that amorphous andcrystalline oxide structures were synthesized. Morphological studies reveal rod-like α-MnO2 for the pristinesample, while cubic Mn3O4 and irregular shaped MnO2 structures were anchored on the AC substrate asrevealed by the scanning electron microscopy (SEM) showing that the nanostructures were uniformlydistributed on AC. The electrochemical tests of the composites as electrodes show that the amorphous ACMnO2had a specific capacitance of 180 F g−1, nearly four times higher than that of crystalline AC-Mn3O4composite electrode (55 F g−1). The Coulombic efficiency for the AC-MnO2 cell was 98 % after 5000 cyclesindicating a small capacitance loss. The green route technique and good electrochemical properties indicatethat the amorphous AC-MnO2 nanocomposite could be a good material for high-capacity, low-cost, andenvironmentally friendly electrodes for electrochemical capacitors.
机译:绿色化学路线(微波)已用于生产基于活性炭(AC)和锰(Mn)氧化物纳米结构的纳米复合材料。 XRD分析表明,合成了非晶和结晶氧化物结构。形态学研究显示原始样品为棒状α-MnO2,而扫描电镜(SEM)显示,立方Mn3O4和不规则形状的MnO2结构被锚固在AC基板上,表明纳米结构在AC上均匀分布。复合材料作为电极的电化学测试表明,非晶态ACMnO2的比电容为180 F g-1,几乎比结晶AC-Mn3O4复合电极(55 F g-1)的电容高四倍。经过5000次循环后,AC-MnO2电池的库仑效率为98%,表明电容损耗较小。绿色路线技术和良好的电化学性能表明,非晶态AC-MnO2纳米复合材料可能是用于电化学电容器的高容量,低成本和环境友好电极的良好材料。

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