Huang Linsheng, Lin Yang, Zeng Wei, Xu Chao, Chen Zhiliang, Wang Qiang, Zhou Hewu, Yu Qitao, Zhao Bingtian, Ruan Limin, Wang Siliang
National Engineering Research Center for Agro-Ecological Big Data Analysis & Application, School of Electronics and Information Engineering, Anhui University, No. 111 Jiulong Road, Hefei, Anhui Province 230601, People's Republic of China.
Information Materials and Intelligent Sensing Laboratory of Anhui Province, School of Electronics and Information Engineering, Anhui University, No. 111 Jiulong Road, Hefei, Anhui Province 230601, People's Republic of China.
Langmuir. 2022 May 17;38(19):5968-5976. doi: 10.1021/acs.langmuir.1c03370. Epub 2022 May 6.
With the development of transparent and wearable electronic devices, energy supply units with high transmittance and flexibility, long cycle life, and high power and energy density are urgently needed. Zinc ion hybrid capacitors (ZIHCs) combined with the advantages of both supercapacitors and zinc ion batteries are promising energy supply components in the abovementioned devices. In addition, the preparation of multifunctional devices has become a trend for the need of space- and resource-saving. Therefore, obtaining ZIHCs with high transmittance and exploring their potential applications are meaningful challenges. Herein, a transparent and flexible ZIHC composed of a patterned zinc foil anode, transparent MXene cathode, and ZnSO-polyacrylamide (PAM) hydrogel electrolyte is designed and realized. The ZIHC exhibits a superior capacitance of 318 μF cm (5 mV s) with 94% transmittance and retains 76% of the initial capacitance after 10,000 charge-discharge cycles. It also shows excellent flexibility, i.e., its capacitance has no obvious attenuation under different bending states. Interestingly, the leakage current of the ZIHC is highly sensitive to electric fields, which shows potential application in electric field detection. This work presents a method to realize the multifunctional ZIHC with electric field sensing function for transparent and flexible wearable devices in the future.
随着透明可穿戴电子设备的发展,迫切需要具有高透射率、柔韧性、长循环寿命以及高功率和能量密度的能量供应单元。结合了超级电容器和锌离子电池优点的锌离子混合电容器(ZIHC)是上述设备中很有前景的能量供应组件。此外,出于节省空间和资源的需求,制备多功能设备已成为一种趋势。因此,获得具有高透射率的ZIHC并探索其潜在应用是具有挑战性但很有意义的。在此,设计并实现了一种由图案化锌箔阳极、透明MXene阴极和ZnSO-聚丙烯酰胺(PAM)水凝胶电解质组成的透明柔性ZIHC。该ZIHC在透射率为94%时展现出318 μF cm(5 mV s)的优异电容,并且在10000次充放电循环后仍保留初始电容的76%。它还表现出出色的柔韧性,即在不同弯曲状态下其电容没有明显衰减。有趣的是,ZIHC的漏电流对电场高度敏感,这表明其在电场检测方面具有潜在应用。这项工作提出了一种未来实现用于透明柔性可穿戴设备的具有电场传感功能的多功能ZIHC的方法。