自供电能量转换与存储系统用双层电极的简易制作

ty10086 提交于 周三, 08/25/2021 - 16:34
文章英文标题
Facile Fabrication of Double-Layered Electrodes for a Self-Powered Energy Conversion and Storage System
正文
在对称超级电容器(双层电极对称SC ( DE-SC ) )中成功地将铝双层电极( DE-Al )作为两个电极,在摩擦电纳米发电机( DE-TENG )中作为一个正电层,目的是利用自相同结构、自供电的柔性器件进行能量转换和存储。简单的水辅助氧化( WAO )工艺和WAO工艺后的金属溅射可以使电极的活性表面积和电导率得到极大的提高,从而提高超级电容器( SC )的电化学性能,特别是这种双层结构的制备工艺耗时少、性价比高。采用循环伏安法( CV )、恒流充放电法( GCD )和电化学阻抗谱( EIS )对所提出的DE-Al进行了系统的电化学测试,并对其表面进行了深入的表征。从这些研究来看,DE-Al与其他结构相比,具有特殊的电化学性能,在聚乙烯醇/磷酸( PVA / H3PO4 )凝胶电解质中用作电极。对制备的SC进行电化学测试,发现其导电性能增强,活性表面积大,性能得到明显改善。采用GCD分析考察了DE-SC的比电容和循环寿命稳定性。此外,还得到了稳定性试验前后( 3500个循环)的EIS曲线,以证明DE-SC的长期耐久性。同样以相同的DE-Al为正电层,聚二甲基硅氧烷( PDMS )为负电层,制备了垂直接触和TENG的分离模式。最后,利用桥式整流器将所制备的SC和TENG成功地结合起来,将机械能转化为电能并存储起来。这种简单的设计和易于制备的双层电极结构有望开发一种能量转换和存储装置。
文章内容(英文)
An aluminum double-layered electrode (DE-Al) was successfully employed as two electrodes in a symmetrical supercapacitor (double-layered electrode symmetric SC (DE-SC)) and as a positive layer of a triboelectric nanogenerator (DE-TENG) with the aim of energy conversion and storage using a selfsame structured, self-powered flexible device. A facile water-assisted oxidation (WAO) process and metal sputtering after the WAO process can allow the electrodes to greatly improve the active surface area and the conductivity, leading to the enhancement of the electrochemical performances of a supercapacitor (SC). Particularly, this double-layered structure fabrication process is extremely less time-consuming and cost-effective. The electrochemical test of the proposed DE-Al was systematically conducted by cyclic voltammetry (CV), galvanostatic charge-discharge (GCD) and electrochemical impedance spectroscopy (EIS), along with the in-depth characterizations of the surface. From these studies, the DE-Al offers exceptional electrochemical properties compared with other structures, which were utilized as the electrodes in the polyvinyl alcohol/phosphoric acid (PVA/H3PO4) gel electrolyte. The improved performance apparently evidenced from the electrochemical tests of fabricated SC resulted from the enhanced electrical conductivity and large active surface area. The specific capacitance and cycle-life stability of the DE-SC were investigated by using a GCD analysis. Additionally, the EIS curves before and after stability test (for 3500 cycles) were obtained to prove the long-term endurance of DE-SC. A vertical contact and the separation mode of the TENG were also fabricated by using the same DE-Al as a positive layer and polydimethylsiloxane (PDMS) as a negative layer. Finally, the fabricated SC and TENG were successfully combined using a bridge rectifier to convert and store the mechanical energy as electrical energy. This simple design and facile fabrication of a double-layered-electrode-based structure is promising for the development of an energy conversion and storage device.
来源出处
Journal|[J]NanomaterialsVolume 10, Issue 12. 2020. PP 2380-2380
DOI
https://doi.org/10.3390/NANO10122380

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