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Activated carbons derived from coconut shells as high energy density cathode material for Li-ion capacitors

机译:椰子壳衍生的活性炭,用作锂离子电容器的高能量密度阴极材料

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In this manuscript, a dramatic increase in the energy density of ~ 69?Wh kg?1 and an extraordinary cycleability ~ 2000 cycles of the Li-ion hybrid electrochemical capacitors (Li-HEC) is achieved by employing tailored activated carbon (AC) of ~ 60% mesoporosity derived from coconut shells (CS). The AC is obtained by both physical and chemical hydrothermal carbonization activation process, and compared to the commercial AC powders (CAC) in terms of the supercapacitance performance in single electrode configuration vs. Li. The Li-HEC is fabricated with commercially available Li4Ti5O12 anode and the coconut shell derived AC as cathode in non-aqueous medium. The present research provides a new routine for the development of high energy density Li-HEC that employs a mesoporous carbonaceous electrode derived from bio-mass precursors.
机译:在本文中,通过使用锂离子混合电化学电容器(Li-HEC),能量密度显着增加了〜69?Wh kg ?1 ,并具有了出色的循环能力〜2000个循环定制的活性炭(AC),其中孔度约为60%,来自椰子壳(CS)。该交流电通过物理和化学水热碳化活化过程获得,并且就单电极配置与Li的超电容性能而言,与商用交流粉末(CAC)进行了比较。 Li-HEC由市售的Li 4 Ti 5 O 12 阳极和椰子壳衍生的AC作为阴极在非水介质中制备而成。本研究为开发高能密度Li-HEC提供了一种新的程序,该方法采用了源自生物质前体的中孔碳质电极。

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