...
首页> 外文期刊>Nanoscale >A high performance flexible all solid state supercapacitor based on the MnO2 sphere coated macro/mesoporous Ni/C electrode and ionic conducting electrolyte
【24h】

A high performance flexible all solid state supercapacitor based on the MnO2 sphere coated macro/mesoporous Ni/C electrode and ionic conducting electrolyte

机译:一个高效灵活的全固态超级电容器的基础上汇总覆盖范围宏/介孔镍/ C电极和离子进行电解液

获取原文
获取原文并翻译 | 示例

摘要

A high contact resistance between the active materials and the current collector, a low ionic conductivity of the gel electrolyte, and an impenetrable electrode structure are the three major barriers which greatly limit the capacitance of MnO2 in solid state supercapacitors. As a potential solution to these problems, in this work we report a novel electrode for solid state supercapacitors, based on a ternary system composed of hierarchical MnO2 spheres as the active material, macroporous Ni foam as gel penetrable skeletons and an ordered mesoporous carbon (OMC) membrane as the charge-transport accelerating layer. By employing butyl-3-methylimidazolium chloride (BMIMCl) modified gels as the ionic conducting electrolyte, the utilization efficiency of MnO2 on the specific capacitance was enhanced up to 88% of the theoretical value, delivering a volumetric capacitance of 81 F cm(-3), which is the highest value among MnO2 based solid state supercapacitors. Moreover, such a flexible device exhibits exceptional volumetric energy and power density (6.6 Wh L-1 and 549 W L-1, based on the whole device volume) combined with a small capacity loss of 8.5% after 6000 cycles under twisting. These encouraging findings unambiguously overcome the energy bottleneck of MnO2 in solid state supercapacitors, and open up a new application of macro/mesoporous materials in flexible devices.
机译:高接触电阻之间的活跃材料和电流收集器,低离子凝胶电解质的电导率,和一个令人费解的是三个电极结构主要障碍,极大地限制了在固态电容的汇总超级电容器。问题,在这个工作我们报告一个小说基于固态超级电容器的电极,三元系统组成的分级汇总球体作为活性物质,大孔倪泡沫凝胶穿透骨骼和有序介孔碳(OMC)膜的加速电荷传输层。butyl-3-methylimidazolium往南追踪(BMIMCl)修改后的凝胶离子导电电解质,汇总的利用率比电容是增强理论值的88%,交付容量电容81 F厘米(3),这是基于汇总的固体之间的最高价值超级电容器。表现出非凡的体积能量和功率密度(6.6 Wh l - 1和549 W l - 1的基础上整个装置体积)加上一个小下6000次后容量损失8.5%扭曲。明确地克服的能源瓶颈汇总在固态超级电容器和开放一个新的应用程序的宏/介孔材料在灵活的设备。

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