首页> 外文OA文献 >A rectification-free piezo-supercapacitor with a polyvinylidene fluoride separator and functionalized carbon cloth electrodes
【2h】

A rectification-free piezo-supercapacitor with a polyvinylidene fluoride separator and functionalized carbon cloth electrodes

机译:具有聚偏二氟乙烯隔板和功能化碳布电极的免整流压电超级电容器

摘要

The integration of energy harvesting and energy storage in this device not only enables the conversion of ambient energy into electricity, but also provides a sustainable power source for various electronic devices and systems. It is highly desirable to improve the integration level and minimize unnecessary energy loss in the power-management circuits between energy harvesting and storage devices. In our work, we integrate a PVDF film into a supercapacitor as both the separator and the energy harvester. The double-sides of the polarized PVDF films are coated with H2SO4/poly(vinyl alcohol) (PVA) gel electrolyte. Functionalized carbon cloths are assembled with H2SO4/PVA electrolyte as both anode and cathode, forming a flexible all-solid-state supercapacitor. Externally mechanical impacts establish a piezoelectric potential across the PVDF films, and drive ions in the electrolyte to migrate towards the interface of the supercapacitor electrode, storing the electricity in the form of electrochemical energy. The asymmetric output characteristic of the piezoelectric PVDF film under mechanical impact results in the effective charging of the supercapacitor without any rectification device. The integrated piezo-supercapacitor exhibits a specific capacitance of 357.6 F m-2, a power density of 49.67 mW h m-2, and an energy density of 400 mW m-2. Our hybridized energy harvesting and storage device can be further extended for providing sustainable power source of various types of sensors.
机译:该设备中能量收集和能量存储的集成不仅使周围的能量转换成电能,而且还为各种电子设备和系统提供了可持续的电源。非常需要提高集成度并使能量收集和存储设备之间的电源管理电路中不必要的能量损失最小化。在我们的工作中,我们将PVDF薄膜集成到超级电容器中,既是隔离器又是能量收集器。偏光PVDF膜的双面涂有H2SO4 /聚乙烯醇(PVA)凝胶电解质。功能化碳布是用H2SO4 / PVA电解质作为阳极和阴极组装而成的,形成了一种柔性的全固态超级电容器。外部机械冲击会在PVDF薄膜上建立压电势,并驱动电解质中的离子向超级电容器电极的界面迁移,以电化学能的形式存储电能。压电PVDF膜在机械冲击下的不对称输出特性导致无需任何整流装置即可对超级电容器进行有效充电。集成的压电超级电容器的比电容为357.6 F m-2,功率密度为49.67 mW h m-2,能量密度为400 mW m-2。我们的混合式能量收集和存储设备可以进一步扩展,以提供各种类型传感器的可持续电源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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