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用于能量收集的柔性基板上的压电聚合物多层膜。

Piezoelectric polymer multilayer on flexible substrate for energy harvesting.

作者信息

Zhang Lei, Oh Sharon Roslyn, Wong Ting Chong, Tan Chin Yaw, Yao Kui

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Sep;60(9):2013-20. doi: 10.1109/TUFFC.2013.2786.

Abstract

A piezoelectric polymer multilayer structure formed on a flexible substrate is investigated for mechanical energy harvesting under bending mode. Analytical and numerical models are developed to clarify the effect of material parameters critical to the energy harvesting performance of the bending multilayer structure. It is shown that the maximum power is proportional to the square of the piezoelectric stress coefficient and the inverse of dielectric permittivity of the piezoelectric polymer. It is further found that a piezoelectric multilayer with thinner electrodes can generate more electric energy in bending mode. The effect of improved impedance matching in the multilayer polymer on energy output is remarkable. Comparisons between piezoelectric ceramic multilayers and polymer multilayers on flexible substrate are discussed. The fabrication of a P(VDF-TrFE) multilayer structure with a thin Al electrode layer is experimentally demonstrated by a scalable dip-coating process on a flexible aluminum substrate. The results indicate that it is feasible to produce a piezoelectric polymer multilayer structure on flexible substrate for harvesting mechanical energy applicable for many low-power electronics.

摘要

研究了在柔性衬底上形成的压电聚合物多层结构在弯曲模式下的机械能收集情况。建立了分析模型和数值模型,以阐明对弯曲多层结构能量收集性能至关重要的材料参数的影响。结果表明,最大功率与压电应力系数的平方成正比,与压电聚合物的介电常数成反比。进一步发现,电极较薄的压电多层结构在弯曲模式下能产生更多电能。多层聚合物中改善的阻抗匹配对能量输出的影响显著。讨论了柔性衬底上压电陶瓷多层结构与聚合物多层结构的比较。通过在柔性铝衬底上进行可扩展的浸涂工艺,实验证明了具有薄铝电极层的聚(偏二氟乙烯-三氟乙烯)多层结构的制备。结果表明,在柔性衬底上制备用于收集机械能的压电聚合物多层结构适用于许多低功率电子设备是可行的。

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