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Comparative electrochemical energy storage performance of cobalt sulfide and cobalt oxide nanosheets: experimental and theoretical insights from density functional theory simulations

机译:硫化钴和钴氧化物纳米液的比较电化学能量储存性能:密度函数理论模拟的实验和理论见解

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摘要

In this study, we have carried out studies on supercapacitor performance comparing cobalt oxide (Co3O4) with cobalt sulfide (Co3S4) nanosheets grown using a facile electrodeposition approach. We have investigated the origin of enhanced energy storage performance of Co3S4 as compared to Co3O4 both by supported experiments and density functional theory investigations. Cobalt oxide exhibits a specific capacitance of 200 F g(-1) at a current density of 2 A g(-1), whereas a high specific capacitance of 558 F g(-1) was achieved in the case of the Co3S4 nanosheets. The enhanced supercapacitor performance of Co3S4 is due to the high surface area, better wettability and high conductivity of the nanosheets. The asymmetric device exhibited a maximum energy density of 47.3 W h kg(-1) with a power density of 2388.4 W kg(-1) for Co3S4//MWCNT. The electrochemical impedance spectroscopic analysis revealed that Co3O4 has a substantially bigger semicircle as compared to Co3S4, confirming inferior charge-transfer characteristics in Co3O4. Density functional theory (DFT) simulations revealed that bulk structures of both Co3S4 and Co3O4 have an anti-ferromagnetic (AFM) configuration with Co atoms at the tetrahedral site having an opposite spin (similar to 2.55 mu(B) each) and those at the octahedral sites being non-magnetic. Co3S4 nanosheets are found to be more conducting due to the presence of higher density of states near the Fermi level and a smaller bandgap compared to Co3O4 which support the observed experimental data on enhanced energy storage performance of Co3S4.
机译:在这项研究中,我们对使用容易电沉积方法生长的硫化钴(CO3O4)纳米晶片(CO3S4)纳米晶片进行了超级电容器性能的研究。通过支持的实验和密度泛函理论调查,我们研究了CO3S4的增强能量储存性能的起源。氧化钴在2Ag(-1)的电流密度下显示出200 f G(-1)的特定电容,而在CO3S4纳米晶片的情况下,实现了558fg(-1)的高比电容。 CO3S4的增强超级电容器性能是由于高表面积,更好的润湿性和纳米蛋白片的高导电性。非对称装置表现出47.3WH kg(-1)的最大能量密度,功率密度为2388.4Wkg(-1),用于CO3S4 // mwCNT。电化学阻抗光谱分析显示,与CO3S4相比,CO 3 O4具​​有基本上更大的半圆形,确认CO 3 O4中的较差的电荷转移特性。密度函数理论(DFT)模拟显示CO3S4和CO3O4的块状结构具有抗铁磁(AFM)构型,其在四面体位点处具有相对旋转的四面体位点(每次250μm)和那些八面体遗址是非磁性的。发现CO3S4纳米片由于FERMI水平附近的状态较高的状态和较小的带隙而导致的,与CO3O4相比,支持观察到的关于CO3S4的增强能量储存性能的CO 3 O4,因此具有更高的带隙。

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