压电
材料科学
光电子学
PMUT公司
联轴节(管道)
同步加速器
压电系数
纳米尺度
热电性
聚合物
机电耦合系数
偶极子
振动
散射
红外线的
电压
机械能
压缩(物理)
堆栈(抽象数据类型)
纳米技术
压电加速度计
作者
Robert Komljenovic,Yemima Ehrnst,Peter C. Sherrell,Amgad R. Rezk,Leslie Y. Yeo
标识
DOI:10.1038/s41467-025-66389-1
摘要
Nylon-11-a common and widely used material, is a promising non-fluorinated piezoelectric polymer given its mechanical strength, chemical stability and elasticity. Nevertheless, it typically possesses low piezoelectric performance, which severely limits its use for energy generation applications. Here, we demonstrate the synthesis of highly aligned, piezoelectric nylon-11 films through an energy-efficient (≈1-5 Wh), single-step platform that facilitates the electroacoustic coupling associated with MHz-order nanoscale vibrations during the crystallisation process. Uniquely, such coupling allows the simultaneous induction of (i) nylon's piezoelectric δ ' -phase, (ii) long-range crystalline ordering, (iii) an ordered hydrogen-bonded network, and (iv) dipole alignment, which we directly probe using time-resolved operando synchrotron grazing-incidence wide-angle X-ray scattering and high-resolution infrared spectroscopy. We show that the material produces a piezoelectric voltage coefficient (g33 = 427 × 10-3 Vm N-1) that surpasses the performance of all piezoelectric polymers reported to date. The film's exceptional mechanical resilience is evident from its stable performance over 20,000 compression cycles at 50 N and its ability to withstand vehicular loads.
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