材料科学
不透明度
透射率
光电子学
电极
电容感应
压力传感器
电介质
透明度(行为)
折射率
电容
聚偏氟乙烯
多孔性
复合材料
光学
聚合物
计算机科学
热力学
操作系统
物理
物理化学
化学
计算机安全
作者
Qingxian Liu,Zhiguang Liu,Chenggao Li,Kewei Xie,Pang Zhu,Biqi Shao,Jianming Zhang,Junlong Yang,Jin Zhang,Quan Wang,Chuan Fei Guo
标识
DOI:10.1002/advs.202000348
摘要
Abstract Human–computer interfaces, smart glasses, touch screens, and some electronic skins require highly transparent and flexible pressure‐sensing elements. Flexible pressure sensors often apply a microstructured or porous active material to improve their sensitivity and response speed. However, the microstructures or small pores will result in high haze and low transparency of the device, and thus it is challenging to balance the sensitivity and transparency simultaneously in flexible pressure sensors or electronic skins. Here, for a capacitive‐type sensor that consists of a porous polyvinylidene fluoride (PVDF) film sandwiched between two transparent electrodes, the challenge is addressed by filling the pores with ionic liquid that has the same refractive index with PVDF, and the transmittance of the film dramatically boosts from 0 to 94.8% in the visible range. Apart from optical matching, the ionic liquid also significantly improves the signal intensity as well as the sensitivity due to the formation of an electric double layer at the dielectric‐electrode interfaces, and improves the toughness and stretchability of the active material benefiting from a plasticization effect. Such transparent and flexible sensors will be useful in smart windows, invisible bands, and so forth.
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