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Free standing flexible graphene oxide plus alpha-MnO2 composite cathodes for Li-Air batteries

机译:独立式柔性氧化石墨烯和锂空气电池的α-MnO2复合阴极

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The most important factor regarding to influence the electrochemical performance of lithium-air battery is to choose an effective catalyst for oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). In this study, alpha-MnO2 (manganese oxide) nanowires were used as an active electrocatalyst synthesized by microwave hydrothermal method. Graphene oxide (GO) and alpha-MnO2 nanowires were combined to obtain free standing paper cathodes and alpha-MnO2+ GO free standing paper cathodes were produced with dispersing different amounts of alpha-MnO2 nanowires (10 wt.%, 30 wt.%, 50 wt.%, and 70 wt.%) by using vacuum filtration method. The morphologies and structures of cathodes are evaluated by scanning electron microscopy (SEM), X-ray diffraction (XRD), and Raman spectroscopy. The electrochemical tests were carried out at the voltage window between 1.0 and 4.5 V in ECC-Air test cell. alpha-MnO2+ GO composite paper containing 70wt.% alpha-MnO2 catalyst showed the highest specific discharge capacity value of 2900 mAh g(-1). Moreover, the experimental findings showed that dispersing of ce-MnO2 catalyst in GO structure results in remarkable improvement of the electrochemical performance of Li-air battery cathodes. (C) 2015 Elsevier B.V. All rights reserved.
机译:影响锂空气电池电化学性能的最重要因素是选择一种有效的氧还原反应(ORR)和氧释放反应(OER)催化剂。在这项研究中,α-MnO2(氧化锰)纳米线被用作通过微波水热法合成的活性电催化剂。结合氧化石墨烯(GO)和α-MnO2纳米线以获得独立式纸阴极,并通过分散不同量的α-MnO2纳米线(10 wt。%,30 wt。%,50重量百分比和70重量百分比)。阴极的形态和结构通过扫描电子显微镜(SEM),X射线衍射(XRD)和拉曼光谱进行评估。电化学测试是在ECC-Air测试电池中的1.0至4.5 V的电压窗口内进行的。含有70%(重量)α-MnO2催化剂的α-MnO2+ GO复合纸显示最高比放电容量值为2900 mAh g(-1)。此外,实验结果表明,将铈锰氧化物催化剂分散在GO结构中可显着改善锂空气电池正极的电化学性能。 (C)2015 Elsevier B.V.保留所有权利。

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