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Non-aqueous energy storage devices using graphene nanosheets synthesized by green route

机译:使用绿色路线合成的石墨烯纳米片的非水储能装置

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In this paper we report the use of triethylene glycol reduced graphene oxide (TRGO) as an electrode material for non-aqueous energy storage devices such as supercapacitors and Li-ion batteries. TRGO based non–aqueous symmetric supercapacitor is constructed and shown to deliver maximum energy and power densities of 60.4?Wh?kg–1 and 0.15 kW kg–1, respectively. More importantly, symmetric supercapacitor shows an extraordinary cycleability (5000 cycles) with over 80% of capacitance retention. In addition, Li-storage properties of TRGO are also evaluated in half-cell configuration (Li/TRGO) and shown to deliver a reversible capacity of ~705 mAh g–1 with good cycleability at constant current density of 37 mA g–1. This result clearly suggests that green-synthesized graphene can be effectively used as a prospective electrode material for non-aqueous energy storage systems such as Li-ion batteries and supercapacitors.
机译:在本文中,我们报告了三乙二醇还原氧化石墨烯(TRGO)作为非水能量存储设备(例如超级电容器和锂离子电池)的电极材料的使用。基于TRGO的非水对称超级电容器的构造和显示可提供的最大能量和功率密度分别为60.4?Wh?kg-1和0.15 kW kg-1。更重要的是,对称超级电容器具有出色的循环能力(5000次循环),电容保持率超过80%。此外,TRGO的锂存储特性也以半电池配置(Li / TRGO)进行了评估,显示出在37 mA g-1的恒定电流密度下可逆容量约为705 mAh g-1,并具有良好的循环能力。该结果清楚地表明,绿色合成的石墨烯可以有效地用作非水能量存储系统(例如锂离子电池和超级电容器)的预期电极材料。

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