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Effect of Surface Characteristics and Surface Area of Reduced Graphene Oxide on the Performance of Pseudocapacitor

机译:石墨烯表面特性和表面积的影响对伪电容器性能的影响

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Sustainable energy storage devices have been one of the most spotlighted topics for the past years. Lithium-ion batteries have successfully taken its role as one the most abundantly researched energy storage devices due to its many advantages such as high energy density, long cycle stability, andetc. However because of its low power density, there have been many attempts to complement this issue; one of which is improving the energy density of supercapacitors while maintaining its biggest advantage of producing high power density values. Supercapacitors have become one of the mainstreams in the field of energy storage devices owing to its advantages such as high power density, fast charge/discharge capability, and its indefinite lifetime.
机译:可持续的能量存储设备是过去几年最具聚焦的主题之一。锂离子电池成功地将其作用作为一种最丰富的能量存储装置,因为它具有高能量密度,长循环稳定性,Andetc等许多优点。然而,由于其低功率密度,有许多尝试补充这个问题;其中一个是提高超级电容器的能量密度,同时保持其产生高功率密度值的最大优点。由于其优于高功率密度,快速充电/放电能力及其无限寿命,超级电容器已成为能量存储装置领域的主流之一。

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