材料科学
电介质
可用的
电容感应
极化率
饱和(图论)
离子键合
纳米技术
离子液体
可穿戴计算机
光电子学
限制
电容
压力传感器
流动电流
离子电导率
计算机科学
制作
柔性电子器件
电阻抗
电导率
非线性系统
数码产品
聚合物
导电聚合物
介电常数
可穿戴技术
电活性聚合物
作者
Hyeonseo Joo,Tianhao Yu,Yumin Dai,Seokkyoon Hong,Axel González Cornejo,Tristan Michael Long,Sang Mok Park,Pete Kollbaum,Edgar Bolívar‐Nieto,Young L. Kim,Dong rip Kim,Chi Hwan Lee
标识
DOI:10.1002/advs.202524195
摘要
Ionogels combine the mechanical softness of polymers with the ionic conductivity and nonvolatility of ionic liquids, offering a versatile platform for wearable electronics and sensing applications. In particular, their high deformability and ionic responsiveness make them attractive dielectric materials for capacitive pressure sensors. However, conventional ionogels often exhibit dielectric saturation and nonlinear responses at elevated pressures, limiting their usable operating range. Here, we report ion-pair-tuned ionogels that balance ionic mobility and polarizability to mitigate dielectric saturation and broaden the linear sensing range up to the megapascal level while maintaining high sensitivity. To validate broad-range functionality-from subtle physiological pressures to large mechanical loads-we integrate the ionogels into intraocular pressure sensors and prosthetic interface monitors, representing low- and high-pressure regimes. These demonstrations establish ion-pair tuning as an effective strategy for achieving broad linear sensing performance in wearable pressure sensors.
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