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Ultrahigh-rate supercapacitors based on eletrochemically reduced graphene oxide for ac line-filtering

机译:基于电化学还原氧化石墨烯的超高速率超级电容器用于交流线路滤波

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摘要

The recent boom in multifunction portable electronic equipments requires the development of compact and miniaturized electronic circuits with high efficiencies, low costs and long lasting time. For the operation of most line-powered electronics, alternating current (ac) line-filters are used to attenuate the leftover ac ripples on direct current (dc) voltage busses. Today, aluminum electrolytic capacitors (AECs) are widely applied for this purpose. However, they are usually the largest components in electronic circuits. Replacing AECs by more compact capacitors will have an immense impact on future electronic devices. Here, we report a double-layer capacitor based on three-dimensional (3D) interpenetrating graphene electrodes fabricated by electrochemical reduction of graphene oxide (ErGO-DLC). At 120-hertz, the ErGO-DLC exhibited a phase angle of −84 degrees, a specific capacitance of 283 microfaradays per centimeter square and a resistor-capacitor (RC) time constant of 1.35 milliseconds, making it capable of replacing AECs for the application of 120-hertz filtering.
机译:近来多功能便携式电子设备的繁荣要求开发出紧凑,小型化的电子电路,其具有高效率,低成本和长寿命的特点。对于大多数线路供电电子设备的操作,交流(ac)线路滤波器用于衰减直流(dc)电压总线上剩余的交流纹波。如今,铝电解电容器(AEC)广泛用于此目的。但是,它们通常是电子电路中最大的组件。用更紧凑的电容器代替AEC会对未来的电子设备产生巨大影响。在这里,我们报道了基于通过电化学还原氧化石墨烯(ErGO-DLC)制作的三维(3D)互穿石墨烯电极的双层电容器。 ErGO-DLC在120赫兹时表现出-84度的相角,每平方厘米283微法拉特的比电容和1.35毫秒的电阻-电容(RC)时间常数,使其能够代替应用中的AEC 120赫兹滤波。

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