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具有高能量转换效率的直接写入压电聚合物纳米发电机。

Direct-write piezoelectric polymeric nanogenerator with high energy conversion efficiency.

机构信息

Berkeley Sensor and Actuator Center, Department of Mechanical Engineering, University of California, Berkeley, California 94720, USA.

出版信息

Nano Lett. 2010 Feb 10;10(2):726-31. doi: 10.1021/nl9040719.

Abstract

Nanogenerators capable of converting energy from mechanical sources to electricity with high effective efficiency using low-cost, nonsemiconducting, organic nanomaterials are attractive for many applications, including energy harvesters. In this work, near-field electrospinning is used to direct-write poly(vinylidene fluoride) (PVDF) nanofibers with in situ mechanical stretch and electrical poling characteristics to produce piezoelectric properties. Under mechanical stretching, nanogenerators have shown repeatable and consistent electrical outputs with energy conversion efficiency an order of magnitude higher than those made of PVDF thin films. The early onset of the nonlinear domain wall motions behavior has been identified as one mechanism responsible for the apparent high piezoelectricity in nanofibers, rendering them potentially advantageous for sensing and actuation applications.

摘要

利用低成本、非半导体有机纳米材料将机械能高效转化为电能的纳米发电机在许多应用中具有吸引力,包括能量收集器。在这项工作中,近场纺丝用于直接书写具有原位机械拉伸和电极化特性的聚偏二氟乙烯 (PVDF) 纳米纤维,以产生压电性能。在机械拉伸下,纳米发电机表现出可重复和一致的电输出,能量转换效率比由 PVDF 薄膜制成的纳米发电机高出一个数量级。非线性畴壁运动行为的早期出现被认为是纳米纤维中明显的高压电性能的一个机制,这使得它们在传感和致动应用中具有潜在的优势。

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