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Growth of nanostructured cobalt sulfide-based nanocomposite as faradaic binder-free electrode for supercapattery

机译:纳米结构硫化钴基纳米复合材料的生长为SuperCapattery的游泳池

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The intermittent nature of renewable energy needs ideal storage device to balance the electricity demand and supply. Specific energy, specific power, and stability of electrode play a critical role to increase better performance of supercapattery. Here, we account a unique cobalt sulfide (CoS) binder-free electrode which was modified with different metals (i.e. manganese (Mn) and copper (Cu), fabricated by hydrothermal technique on the nickel foam (NF). The morphological features portray uniform distribution of flakes with different textures after the incorporation of Mn and Cu with the optimised cobalt sulfide system, respectively. Among all electrodes, Mn-CoS-3/NF exhibits a significant boost in the rate capability at 74% compared to CoS-3/NF (75%) and Cu-CoS-3/NF (59%) electrodes with maximum specific capacitance of 2379 F/g at 1 A/g. Mn-CoS-3/NF also shows capacitance retention about 65% after 5500 cycles compared to CoS-3/NF (48%) and Cu-CoS-3/NF (55%) when performed as three electrode system configurations. The outstanding performance of Mn-CoS-3/NF as compared to the other electrodes is contributed to its high surface area, flake-like nanostructure, valence state of metal, and low internal resistance. In order to evaluate the real time performance of Mn-CoS-3/NF, supercapattery device was fabricated in a configuration of Mn-CoS-3/NF//AC/NF. Mn-CoS-3/NF//AC/NF delivered a specific energy (17.94 Wh/kg at 806 W/kg) and specific power (6405 W/kg at 4.66 Wh/kg). The capacity decayed slowly to 92% after 9000 cycles together with a coulombic efficiency of 99%, indicating good stability of the device.
机译:可再生能源的间歇性质需要理想的存储设备来平衡电力需求和供应。电极的具体能量,特定功率和稳定性起到了提高超级换热仪的更好性能的关键作用。在此,我们考虑一种独特的硫化钴(COS)粘合剂电极,其用不同的金属(即锰(Mn)和铜(Cu)改性,通过镍泡沫(NF)上的水热技术制造。形态特征描绘均匀分别用优化的钴硫化物体系掺入Mn和Cu后用不同纹理的薄片分布。在所有电极中,与COS-3 / / NF(75%)和Cu-COS-3 / NF(59%)电极,最大比电容为1A / g的最大特定电容。Mn-CoS-3 / NF还显示了5500次循环后的电容保留约65%与COS-3 / NF(48%)和CU-COS-3 / NF(55%)相比为三个电极系统配置相比。与其他电极相比,MN-COS-3 / NF的出色性能贡献到其高表面积,薄片状纳米结构,金属的价态,内阻低。为了评估Mn-CoS-3 / NF的实时性能,超级换热器装置在MN-COS-3 / NF // AC / NF的配置中制造。 Mn-CoS-3 / NF // AC / NF在特定能量(以806W / kg处为17.94WH / kg)和特定功率(4.66W / kg为4.66W / kg)。 9000个循环在900%的水库效率下,该容量缓慢衰减至92%,表明该装置的稳定性良好。

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