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Synthesis of Free-Standing Flexible rGO/MWCNT Films for Symmetric Supercapacitor Application

机译:用于对称超级电容器的自由站立柔性rGO / MWCNT薄膜的合成

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摘要

Herein, we report a novel, simple, and cost-effective way to synthesize flexible and conductive rGO and rGO/MWCNT freestanding films. The effects of MWCNT addition on the electrochemical performance of rGO/MWCNT nanocomposite films are investigated in some strong base aqueous electrolytes, such as KOH, LiOH, and NaOH via three-electrode system. The supercapacitor behavior of the films is probed via cyclic voltammetry, galvanostatic charging-discharging, and electrochemical impedance spectroscopy. The structural and morphological studies of the films are performed by X-ray diffractometer, Raman spectrometer, surface area analyzer, thermogravimetric analysis, field emission scanning electron microscope and transmission electron microscope. The rGO/MWCNT film synthesized with 10 wt% MWCNTs (GP10C) exhibits high specific capacitance of 200 Fg−1, excellent cyclic stability with 92% retention after 15,000 long cycle test, small relaxation time constant (~ 194 ms), and high diffusion coefficient (7.8457 × 10−9 cm2 s−1) in 2 M KOH electrolyte. Furthermore, the symmetric supercapacitor coin cell with GP10C as both anode and cathode using 2 M KOH as electrolyte demonstrates high energy density of 29.4 Whkg−1 and power density of 439 Wkg−1 at current density 0.1 Ag−1 and good cyclic stability with 85% retention of the initial capacitance at 0.3 Ag−1 after 10,000 cycles. Such a high performance of the GP10C film in the supercapacitor can be ascribed to the large surface area and small hydration sphere radius and high ionic conductivity of K+ cations in KOH electrolyte.
机译:本文中,我们报告了一种新颖,简单且具有成本效益的方式来合成柔性导电rGO和rGO / MWCNT独立膜。通过三电极系统研究了在某些强碱水性电解质(如KOH,LiOH和NaOH)中MWCNT添加对rGO / MWCNT纳米复合膜电化学性能的影响。膜的超级电容器行为通过循环伏安法,恒电流充放电和电化学阻抗谱来探测。薄膜的结构和形态研究是通过X射线衍射仪,拉曼光谱仪,表面积分析仪,热重分析,场发射扫描电子显微镜和透射电子显微镜进行的。用10 wt%的MWCNTs(GP10C)合成的rGO / MWCNT膜具有200 Fg -1 的高比电容,出色的循环稳定性和在15,000个长循环测试后的92%保留率,小的松弛时间常数(〜 194 ms),在2 M KOH电解液中的扩散系数高(7.8457×10 −9 cm 2 s -1 )。此外,以2 M KOH为电解质,GP10C作为阳极和阴极的对称超级电容器纽扣电池显示出29.4 Whkg -1 的高能量密度和439 Wkg -1 在电流密度0.1 Ag -1 时具有良好的循环稳定性,并且在10,000次循环后保持初始电容在0.3 Ag -1 的85%的良好循环稳定性。超级电容器中GP10C膜的这种高性能可归因于KOH电解质中的大表面积,小水化球半径和高K +离子的电导率。

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