材料科学
介观物理学
热塑性聚氨酯
滑脱
纳米技术
分子动力学
同质性(统计学)
可靠性(半导体)
聚合物
离子
分子
热塑性塑料
流变学
合理设计
色散(光学)
复合材料
化学工程
热塑性弹性体
工作(物理)
作者
Xiaosai Hu,Haoran Cao,Haoqi Liu,Yuanyu Ge,Meng Sun,Hongming Lv,Tianchi Zhou
摘要
sensitivity). The superior performance can be attributed to the unique hierarchical interfacial design facilitated by PCE. At the molecular level, PCE anchors IL molecules through electrostatic forces, effectively suppressing ion mobility and preventing ion leakage. Simultaneously, the comb-like architecture of PCE physically entangles with TPU chains, reinforcing the network structure and inhibiting chain slippage under deformation. These synergistic effects ensure mesoscopic homogeneity and macroscopic stability, enabling the ionogel to maintain uniform IL dispersion and structural integrity even under extreme deformation conditions (up to 1000% strain). This work presents a straightforward yet powerful interfacial engineering approach that significantly enhances the long-term reliability and sensing performance of flexible ionogels, paving the way for their practical deployment in next-generation wearable electronics, electronic skins, and soft robotics.
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