压电
材料科学
桥接(联网)
压电传感器
极化(电化学)
纳米复合材料
压力传感器
压电系数
复合材料
光电子学
纳米技术
机械工程
计算机科学
工程类
计算机网络
化学
物理化学
作者
Yong Ao,Long Jin,Shenlong Wang,Bin Lan,Guo Tian,Tianpei Xu,Longchao Huang,Zihan Wang,Yue Sun,Tao Yang,Weili Deng,Fan Yang,Weiqing Yang
出处
期刊:Nano-micro Letters
[Springer Science+Business Media]
日期:2025-07-03
卷期号:17 (1): 320-320
被引量:7
标识
DOI:10.1007/s40820-025-01839-5
摘要
Abstract The emerging interfacial polarization strategy exhibits applicative potential in piezoelectric enhancement. However, there is an ongoing effort to address the inherent limitations arising from charge bridging phenomena and stochastic interface disorder that plague the improvement of piezoelectric performance. Here, we report a dual structure reinforced MXene/PVDF-TrFE piezoelectric composite, whose piezoelectricity is enhanced under the coupling effect of interfacial polarization and structural design. Synergistically, molecular dynamics simulations, density functional theory calculations and experimental validation revealed the details of interfacial interactions, which promotes the net spontaneous polarization of PVDF-TrFE from the 0.56 to 31.41 Debye. The oriented MXene distribution and porous structure not only tripled the piezoelectric response but also achieved an eightfold increase in sensitivity within the low-pressure region, along with demonstrating cyclic stability exceeding 20,000 cycles. The properties reinforcement originating from dual structure is elucidated through the finite element simulation and experimental validation. Attributed to the excellent piezoelectric response and deep learning algorithm, the sensor can effectively recognize the signals of artery pulse and finger flexion. Finally, a 3 × 3 sensor array is fabricated to monitor the pressure distribution wirelessly. This study provides an innovative methodology for reinforcing interfacial polarized piezoelectric materials and insight into structural designs.
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