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用于高性能压电能量收集器和自供电声学传感器的具有取向晶体的自极化聚偏氟乙烯渗透尼龙11气凝胶。

Self-Poled PVDF Infiltrated Nylon 11 Aerogels with Oriented Crystals for High-Performance Piezoelectric Energy Harvesters and Self-Powered Acoustic Sensors.

作者信息

George Ashitha, Athira B S, Chandran Achu, Surendran Kuzhichalil Peethambharan, Gowd E Bhoje

机构信息

Materials Science and Technology Division, CSIR-National Institute for Interdisciplinary Science and Technology, Trivandrum, Kerala, 695 019, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201 002, India.

出版信息

Small. 2025 Jul;21(26):e2502794. doi: 10.1002/smll.202502794. Epub 2025 May 10.

DOI:10.1002/smll.202502794
PMID:40346977
Abstract

Efficient piezoelectric polymers with enhanced electromechanical conversion gain significant attention for energy harvesting and sensing applications. Among them, poly(vinylidene fluoride) (PVDF) and odd-nylons stand out due to their high piezoelectric coefficients and thermal stability. However, achieving a piezoelectric phase with a preferred crystal orientation for optimal performance remains challenging, particularly under mild processing conditions. In this study, a vacuum-assisted infiltration technique is introduced to fabricate PVDF-infiltrated nylon-11 (PVDFIPA11) aerogels with oriented polymer crystallites. Anisotropic nylon-11 aerogels, featuring aligned polymer crystals, serve as templates for PVDF infiltration under vacuum. This process facilitates the formation of highly oriented β phase PVDF crystals alongside γ phase nylon-11 crystals, yielding a fully self-poled system without the need for external poling. A piezoelectric nanogenerator (PENG) based on the PVDFIPA11 aerogel exhibits a high output voltage (peak-to-peak) of ≈45 V and a peak power density of 2.2 Wm⁻ significantly outperforming pristine PVDF and nylon-11 aerogels. Additionally, the PVDFIPA11 aerogel PENG is demonstrated as a self-powered acoustic sensor, effectively distinguishing sound signals at varying pressure levels. This work provides a scalable and practical strategy for developing self-poled piezoelectric polymer aerogels, paving the way for next-generation energy-harvesting devices and sensors.

摘要

具有增强机电转换效率的高效压电聚合物在能量收集和传感应用中备受关注。其中,聚偏氟乙烯(PVDF)和奇数尼龙因其高压电系数和热稳定性而脱颖而出。然而,要获得具有最佳性能的优选晶体取向的压电相仍然具有挑战性,尤其是在温和的加工条件下。在本研究中,引入了一种真空辅助渗透技术来制备具有取向聚合物微晶的PVDF渗透尼龙-11(PVDFIPA11)气凝胶。具有排列整齐的聚合物晶体的各向异性尼龙-11气凝胶在真空下用作PVDF渗透的模板。该过程有助于在γ相尼龙-11晶体旁边形成高度取向的β相PVDF晶体,从而产生无需外部极化的完全自极化系统。基于PVDFIPA11气凝胶的压电纳米发电机(PENG)表现出约45 V的高输出电压(峰峰值)和2.2 Wm⁻的峰值功率密度,明显优于原始PVDF和尼龙-11气凝胶。此外PVDFIPA11气凝胶PENG被证明是一种自供电声学传感器,能够有效区分不同压力水平的声音信号。这项工作为开发自极化压电聚合物气凝胶提供了一种可扩展且实用的策略,为下一代能量收集装置和传感器铺平了道路。

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