首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Three-dimensional porous V2O5 hierarchical spheres as a battery-type electrode for a hybrid supercapacitor with excellent charge storage performance
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Three-dimensional porous V2O5 hierarchical spheres as a battery-type electrode for a hybrid supercapacitor with excellent charge storage performance

机译:三维多孔V2O5分层球作为混合超级电池的电池型电极,具有出色的电荷存储性能

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摘要

Three-dimensional porous V2O5 hierarchical spheres composed of stacked platelets were fabricated by a facile, low-cost and template-free method. The synthetic route involved precipitation of precursor microspheres in aqueous solution at room temperature and subsequent calcination. Various techniques including XRD, FE-SEM, TEM, EDS, IR, Raman and nitrogen adsorption-desorption isotherms were used to reveal the composition, morphology and structure of the as-obtained porous V2O5 hierarchical spheres. The BET specific surface area of V2O5 hierarchical spheres measured 14 m(2).g(-1) and their average pore size reached 18.2 nm, and a majority of pores in the hierarchical structures were mesoporous. Electrochemical properties of the as-obtained three-dimensional porous V2O5 hierarchical spheres as a battery-type electrode were investigated by cyclic voltammetry (CV), galvanostatic charge-discharge (GCD) and electrochemical impedance spectroscopy (EIS). The hierarchical spheres displayed excellent rate capability and an excellent capacity up to 473 C.g(-1) at 0.2 A.g(-1) owing to their high ion transfer speed that transpired between electrolytes and active electrode materials. A flexible hybrid supercapacitor (HSC) device was fabricated using the as-obtained three-dimensional porous V2O5 hierarchical spheres as a cathode and activated carbon as an anode and delivered an excellent capacitance of 0.26 F cm(-2) at 10 mV s(-1). The good electrochemical performance of the porous V2O5 hierarchical spheres indicates their high potential as a battery-type electrode material for the HSC device.
机译:由堆叠血小板组成的三维多孔V2O5分层球通过容易,低成本和无模板法制造。合成途径在室温下涉及水溶液中前体微球的沉淀和随后的煅烧。使用各种技术,包括XRD,Fe-SEM,TEM,EDS,IR,拉曼和氮吸附 - 解吸等温线用于揭示所获得的多孔V2O5分层球的组成,形态和结构。测量14μm(2).g(-1)的V2O5分层球的BET比表面积及其平均孔径达到18.2nm,分层结构中的大部分孔隙是介孔。通过循环伏安法(CV),电镀电荷 - 放电(GCD)和电化学阻抗光谱(EIS)研究了作为电池型电极作为电池型电极作为电池型电极的电化学性质。由于其在电解质和有源电极材料之间递送的高离子转移速度,等级球体显示出优异的速率能力和高达473c.g(-1)的优异容量。使用AS获得的三维多孔V2O5分层球体作为阴极和作为阳极的活性炭制造柔性混合超级电容器(HSC)器件,并在10mV S( - )以10mV( - )输送优异的0.26fcm(-2)的电容( - 1)。多孔V2O5分层球的良好电化学性能表示其作为HSC器件的电池型电极材料的高潜力。

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