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A Novel Flexible Hybrid Battery-Supercapacitor Based on a Self-Assembled Vanadium-Graphene Hydrogel

机译:一种基于自组装钒 - 石墨烯水凝胶的新型柔性混合动力电池超级电容器

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摘要

A novel flexible hybrid battery-supercapacitor device is proposed consisting of high specific surface area electrodes paired with an electrolyte, which contains a redox species that can exist in more than two oxidation states. The two initially equal half-cells of the device consist of a reduced graphene oxide hydrogel which encapsulates vanadium ions, synthesized with a single-step method. During charge, the oxidation state of the vanadium ions changes, resulting in two half-cells with different potentials which considerably increases the energy density. The achieved maximum capacity of more than 225 mAh g(-1) is roughly eight times higher than that of comparable graphene hydrogel supercapacitors without vanadium content, but the potentiostatic charging time is only double. Operated as a supercapacitor, it retains 95% of the initial capacitance over 1000 cycles. As battery, the losses are more significant, retaining around 50% of the initial capacity. However, these losses during battery operation can be almost entirely restored by electric measures. The vanadium ion addition also improves the self-discharge characteristics of the device. Moreover, the self-discharge does not permanently damage the hybrid device since both half-cells initially consist of the same vanadium graphene hydrogel and discharging resets it to initial conditions.
机译:提出了一种新颖的柔性混合电池超级电容器装置,其由与电解质配对的高比表面积电极组成,该电解质含有氧化还原态在两个以上的氧化态中。该装置的两个最初等于的半细胞组成的石墨烯氧化物水凝胶组成,其用单步法合成钒离子。在电荷期间,钒离子的氧化状态发生变化,导致两个具有不同电位的半电池,其显着增加了能量密度。实现的最大容量超过225mAhg(-1)大约比没有钒含量的可比较石墨烯水凝胶超级电容器高的八倍,但电位充电时间仅为双倍。作为超级电容器操作,它保留超过1000个循环的初始电容的95%。作为电池,损失更为显着,留在初始容量的50%左右。然而,电池运行期间的这些损失几乎可以通过电测量完全恢复。钒离子加成还改善了装置的自放电特性。此外,自放电不会永久地损坏混合装置,因为两个半电池最初由相同的钒石墨烯水凝胶和放电将其重置为初始条件。

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