首页> 外文期刊>Journal of Energy Storage >Activated carbon- supported Vanado-nickelate (Ⅳ) based hybrid materials for energy application
【24h】

Activated carbon- supported Vanado-nickelate (Ⅳ) based hybrid materials for energy application

机译:基于活性的碳酸钒钙(Ⅳ)的能量应用的混合材料

获取原文
获取原文并翻译 | 示例
       

摘要

The rapid development of supercapacitor (SC) technology leads to increased demand for nanofabrication of novel and effective electroactive hybrid materials for next-generation energy storage devices. Herein, nickel tetrade-cavanadate, K2H5[NiV14O40](NiV14), is doped into porous activated carbon (AC), for the first time, in different wt.% in order to investigate the homogeneous loading of the inorganic metal-oxide component on the AC matrix. The resulting complex, AC-NiV14, is found to have possessed an enhanced electrochemical characteristic (for both symmetric and asymmetric SC cell), which operates at a significantly higher potential of 1.2 V. The combination of the double-layer capacitance (EDLC) and the redox-active polyoxometalate cluster leads to an intrinsic increase in specific capacitance (capacity) (from 45.3 Fg(-1) (54.4 Cg(-1)) for AC to 316 Fg(-1) (379.2 Cg(-1)) for 15 wt.% AC-NiV14 at a current density of 1 Ag-1). It was also observed that there is an increase of 20% in the operating voltage compared to conventional AC supercapacitors with acidic aqueous electrolytes. Firstly, symmetric supercapacitor's electrochemical performances of various wt.% of NiV14 composition were studied in acidic aqueous electrolyte (0.5 M H2SO4) solution. We observed that the 15 wt.% of AC-NiV14 hybrid electrode showed remarkable specific energy value (similar to 63.2 Wh kg(-1)) compared with pristine AC and NiV14 electrodes, separately. Besides, the asymmetric layout (AC//AC-NiV14) increased the potential window up to 1.5 V and enhanced the specific energy and power values (90.1 Whkg(-1) and 2400 Wkg(-1), respectively), with 98% coulombic efficiency. Meanwhile, the AC-NiV14//NiV14 asymmetric cell possesses a specific capacitance (capacity) of 375 Fg(-1) (450 Cg(-1)) with a maximum power of 3140 Wkg(-1) at the high current density of 2 Ag-1.
机译:超级电容器(SC)技术的快速发展导致对下一代储能装置的新颖和有效的电活性混合材料的纳米制造需求增加。这里,镍四孔酸盐,K 2 H 5 [NIV14O40](NIV14),首次掺杂到多孔活化的碳(AC)中,其次是不同的重量%。%以研究无机金属氧化物组分的均匀负载交流矩阵。发现得到的复合物AC-NIV14具有增强的电化学特性(对于对称和不对称SC单元),其在1.2V的显着较高的电位下操作。双层电容(EDLC)和氧化还原活性多氧化簇簇导致特定电容(容量)的内在增加(45.3FG(-1)(54.4cg(-1)),适用于316 fg(-1)(379.2 cg(-1))对于15wt.%AC-NIV14,在电流密度为1AG-1)。还观察到,与常规AC超级电容器相比,工作电压增加了20%的20%,与酸性水性电解质相比。首先,对称超级电容器的各种WT的电化学性能。在酸性水电解质(0.5M H 2 SO 4)溶液中研究了NIV14组合物的%。我们观察到,15重量%。与原始AC和NIV14电极相比,AC-NIV14混合电极的占AC-NIV14混合电极的%显着的特定能量值(类似于63.2WH kg(-1))。此外,非对称布局(AC // AC-NIV14)增加到1.5 V的潜在窗口,并增强了特定的能量和功率值(90.1 WHKG(-1)和2400WKG(-1),98%库仑效率。同时,AC-NIV14 // NIV14不对称电池具有375 FG(-1)(450cg(-1))的特定电容(容量),最大功率为3140 Wkg(-1)的高电流密度2 ag-1。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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