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γ 相占主导的超韧聚偏氟乙烯/TiO 纳米复合材料薄膜的介电常数和击穿强度提高:储能应用和压电输出的优异材料。

Improved dielectric constant and breakdown strength of γ-phase dominant super toughened polyvinylidene fluoride/TiO nanocomposite film: an excellent material for energy storage applications and piezoelectric throughput.

机构信息

Organic Nano-Piezoelectric Device Laboratory, Department of Physics, Jadavpur University, Kolkata 700032, India.

出版信息

Nanotechnology. 2017 Jan 6;28(1):015503. doi: 10.1088/0957-4484/28/1/015503. Epub 2016 Nov 29.

Abstract

Titanium dioxide (TiO) nanoparticles (NPs) embedded γ-phase containing polyvinylidene fluoride (PVDF) nanocomposite (PNC) film turns to an excellent material for energy storage application due to an increased dielectric constant (32 at 1 kHz), enhanced electric breakdown strength (400 MV m). It also exhibits a high energy density of 4 J cm which is 25 times higher than that of virgin PVDF. 98% of the electroactive γ-phase has been acheived by the incorporation of TiO NPs and the resulting PNC behaves like a super-toughened material due to a dramatic improvement (more than 80%) in the tensile strength. Owing to their electroactive nature and extraordinary mechanical properties, PNC films have a strong ability to fabricate the piezoelectric nanogenerators (PNGs) that have recently been an area of focus regarding mechanical energy harvesting. The feasibility of piezoelectric voltage generation from PNGs is demostrated under the rotating fan that also promises further utility such as rotational speed (RPM) determination.

摘要

钛白粉(TiO)纳米粒子(NPs)嵌入含β相的聚偏二氟乙烯(PVDF)纳米复合(PNC)薄膜由于介电常数(1 kHz 时为 32)的增加,电击穿强度(400 MV m)增强,成为储能应用的绝佳材料。它还表现出 4 J cm 的高能量密度,比原始 PVDF 高 25 倍。通过加入 TiO NPs,实现了 98%的活性 γ 相,所得 PNC 表现出类似于超韧材料的性质,因为拉伸强度有了显著提高(超过 80%)。由于其电活性和非凡的机械性能,PNC 薄膜具有很强的能力来制造压电纳米发电机(PNG),这是最近机械能量收集的一个关注领域。在旋转风扇下,从 PNG 产生压电电压的可行性得到了证明,这也预示着进一步的实用价值,如转速(RPM)的确定。

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