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首页> 外文期刊>Journal of Electrochemical Energy Conversion and Storage >Highly Active Electrode With Efficiently Added Surface Oxygen Groups for a Vanadium Redox Flow Battery
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Highly Active Electrode With Efficiently Added Surface Oxygen Groups for a Vanadium Redox Flow Battery

机译:高活性电极,具有有效添加的钒氧化还原流电池的表面氧基团

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摘要

Higher power output by a lower kinetic resistance of the vanadium redox flow battery is needed for its commercialization. In this study, we focused on the air oxidation conditions of carbon paper, which is the electrode material, to reduce the kinetic resistance. The air oxidation is considered to affect the number of surface oxygen groups such as the phenol-type hydroxyl group due to oxidation of the carbon fiber. The surface oxygen groups may correspond to the active sites for the charge/discharge reaction. We quantitatively evaluated the number of surface oxygen groups by temperature-programmed desorption. In addition, we measured the double-layer capacitances of the carbon papers, which may reflect the surface area of the carbon fiber. The single-cell performances, i.e., current–voltage curves and charge–discharge profile, of the electrodes were studied. The air oxidized carbon paper, heat-treated at 500 °C for 3 h (8.4% mass decrease from the pristine sample), showed the highest power density (960 mW cm~(?2)) in this study with thin electrode material (ca., 0.2 mm for one sheet). The negative half-reaction was enhanced by air oxidation. This result could be explained by the reduction of the kinetic resistance by increasing the number of phenol groups, and this power output was relatively high as the vanadium redox flow battery by using a commercial carbon paper and the standard flow field.
机译:通过钒氧化氢电池的较低动力电阻的较高功率输出是其商业化。在这项研究中,我们专注于碳纸的空气氧化条件,即电极材料,以降低动力学阻力。由于碳纤维的氧化,认为空气氧化是影响诸如酚类羟基的表面氧数量。表面氧基团可以对应于充电/放电反应的活性位点。我们通过温度编程的解吸定量地评估表面氧的数量。另外,我们测量了碳纸的双层电容,其可以反映碳纤维的表面积。研究了电极的单细胞性能,即电流电压曲线和充电 - 放电曲线。空气氧化碳纸,在500℃下热处理3小时(从原始样品的质量减少8.4%),在本研究中,具有薄电极材料(一张纸0.2毫米)。通过空气氧化增强了负半反应。通过增加苯酚基团的数量来减少动力阻力可以解释该结果,并且这种功率输出通过使用商业碳纸和标准流场与钒氧化还原流电池相对较高。

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