...
首页> 外文期刊>Materials Chemistry Frontiers >The supercapacitor electrode properties and energy storage mechanism of binary transition metal sulfide MnCo2S4 compared with oxide MnCo2O4 studied using in situ quick X-ray absorption spectroscopy
【24h】

The supercapacitor electrode properties and energy storage mechanism of binary transition metal sulfide MnCo2S4 compared with oxide MnCo2O4 studied using in situ quick X-ray absorption spectroscopy

机译:超级电容器电极性能和能量二元过渡金属的存储机制硫化MnCo2S4与氧化物MnCo2O4相比研究了用原位x射线吸收快光谱学

获取原文
获取原文并翻译 | 示例
           

摘要

Binary transition-metal sulfide MnCo2S4 (MCS) and oxide MnCo2O4 (MCO) nanowires grown on nickel foam were prepared with facile hydrothermal method. The MCS electrode not only exhibits a large areal capacity, 1.17 mA h cm~(-2) at current density 3 mA cm~(-2) but also shows great rate capability and cycling stability in an alkaline electrolyte. In situ quick X-ray absorption spectroscopy of the Mn K-edge and Co K-edge of MCS demonstrate that both average valence states of elements Mn and Co show a notable change from the faradaic pseudocapacitance, inferring a synergistic effect of two elements. Based on a Co K-edge and Mn K-edge extended X-ray absorption fine structure analysis of MCS, some Mn-S/Co-S bonds on the surface of electrode are broken and then become active sites, which can react with hydroxide ions. Besides a synergistic effect of two elements, the active sites arising from the broken Mn-S/Co-S bonds hence enhance significantly the capacitive performance of the MCS electrode. Our work provides new insight into the electrochemical mechanism and the main difference for supercapacitor performance between MCS and the corresponding oxide MCO electrodes. These results demonstrate a different mechanism for binary transition metal sulfide and oxide in electrochemical reaction of energy storage.
机译:二元过渡金属硫化物MnCo2S4 (MCS)在镍氧化物MnCo2O4 (MCO)纳米线生长泡沫和温和的水热准备的方法。区域能力大,1.17 mA h厘米~ (2)电流密度马3厘米~(2)也显示了伟大率和循环稳定的能力碱性电解液。吸收光谱的Mn K-edge和有限公司K-edge MCS证明的平均水平价锰和钴元素的状态显示感应电流的显著变化pseudocapacitance,推断协同效应两个元素。K-edge扩展x射线吸收精细结构分析MCS,一些Mn-S /联合债券上电极表面被打破,然后成为活跃的网站,它可以与氢氧化反应离子。元素,因活动网站因此加强破碎Mn-S /联合债券显著的电容性能MCS电极。电化学和主要机制为超级电容器性能之间的差异MCS和相应的氧化物电极相比。这些结果表明不同的机制二元过渡金属硫化物和氧化物电化学反应的能量存储。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号