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A dual metal organic framework based on copper-iron clusters integrated sulphur doped graphene as a porous material for supercapacitor with remarkable performance characteristics

机译:基于铜 - 铁簇的双金属有机框架集成了硫掺杂石墨烯,作为超级电容器的多孔材料,具有显着性能特性

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Herein, a novel bimetallic metal organic framework (MOF) using copper and iron as the metal centers with 1,3,5-tricarboxylic acid as a ligand (CuFeBTC) and its composite with sulphur doped graphene (S-GNS) have been investigated for supercapacitive performance. The synthesis of materials has been carried out using a facile wet chemical route. The physicochemical characterization of the materials employing various structural and surface techniques has been performed which confirms the successful formation of nanocomposite. The capacitive behavior of CuFeBTC, S-GNS and CuFeBTC/S-GNS has been systematically examined using 1 M Na2SO4 as an electrolyte in a three and two electrode assembly. The electrochemical studies reveal that CuFeBTC/S-GNS electrode demonstrates highest specific capacitance of 1164.3 F g(-1) at 0.5 A g(-1) with suffice rate capability as compared to CuFeBTC and S-GNS electrodes. Moreover, a symmetric supercapacitor is configured using the CuFeBTC/S-GNS nanocomposite electrodes which deliver remarkable energy and power output of 96.57 Wh kg(-1) and 1595.12 W kg(-1) at an operating voltage of 1.8 V. The as-fabricated symmetric supercapacitor displays competent energy storage retention of 50.2 Wh kg(-1) even at current density of 20.0 A g(-1) with high power density 26973.13 W kg(-1). These deliverables epitomize the latest performance record of bimetallic MOFs based supercapacitors, suggesting that CuFeBTC/S-GNS is a promising active material for high performance electrochemical energy storage applications. (C) 2019 Elsevier Inc. All rights reserved.
机译:在此,研究了一种新的双金属有机骨架(MOF),其使用铜和铁作为具有1,3,5-三羧酸作为配体(CuFeBTC)的金属中心及其用硫掺杂石墨烯(S-GNS)的金属中心超级性能。使用容易湿化学途径进行材料的合成。已经进行了采用各种结构和表面技术的材料的物理化学表征,其证实了纳米复合材料的成功形成。使用1M Na 2 SO 4作为三个电极组件中的电解质系统地检查了CuFeBTC,S-GNS和CuFeBTC / S-GNS的电容性能。电化学研究表明,CuFeBTC / S-GNS电极在0.5 A克(-1),就足够了速率能力相比CuFeBTC和S-GNS电极演示1164.3 F G(-1)最高的比电容。此外,使用CuFeBTC / S-GNS纳米复合电极配置了对称超级电容器,其在1.8V的工作电压下提供了96.57WH kg(-1)和1595.12 W kg(-1)的显着能量和功率输出。制造的对称超级电容器即使在高功率密度26973.13WKG(-1)的电流密度为20.0ag(-1)的电流密度,也显示出50.2WH kg(-1)的能量储存保留。这些可交付成果将基于Bimetallic Mofs的超级电容器的最新性能记录缩影,表明CufeBTC / S-GNS是高性能电化学能量存储应用的有希望的活性材料。 (c)2019 Elsevier Inc.保留所有权利。

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