Sultan AhmedSk. Khaja HussainAhsan Uddin AhmedM. Rafat
Activated carbon due to its inherent properties such as large surface area and low cost is most frequently used electrode material for supercapacitor. Activated carbon has been previously derived from various biomass such as coconut shell, coffee bean etc. Herein, we report the synthesis of activated carbon from waste orange skin. The material was synthesized employing chemical activation method and the success of synthesis was confirmed by its physical and electrochemical properties. The physical properties of the as-prepared sample were studied using the techniques of XRD, SEM, Raman spectroscopy and N2 adsorption/desorption analysis while its electrochemical properties were studied in two-electrode assembly using liquid electrolyte (consisting of 1 M solution of LiTFSI dispersed in ionic liquid EMITFSI) and employing the techniques of cyclic voltammetry, electrochemical impedance spectroscopy and galvanostatic charge- discharge. The synthesized sample of activated carbon exhibits high specific capacitance of 115 F g-1 at 10 mV s−1. Also, the activated carbon electrode shows the retention of ∼75% in initial capacitance value for more than 2000 initial cycles, indicating the as-prepared activated carbon can be profitably used as electrode material for energy storage devices.
Niyaz AhmadAlessia RinaldiMichele SidoliGiacomo MagnaniAlberto MorenghiSilvio ScaravonatiVincenzo VezzoniLorenzo PasettiLaura FornasiniFrancesca RidiChiara MilaneseMauro RiccòDaniele Pontiroli
Sultan AhmedAhsan Uddin AhmedM. Rafat
Huaxing XuBiao GaoHao CaoXueyang ChenLing YuKai WuLan SunXiang PengJijiang Fu
Sultan AhmedM. RafatAhsan Uddin Ahmed