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用于可穿戴纳米发电机的γ-晶型非电场极化光致发光ZnO-PVDF纳米复合薄膜的制备

The preparation of γ-crystalline non-electrically poled photoluminescant ZnO-PVDF nanocomposite film for wearable nanogenerators.

作者信息

Jana Santanu, Garain Samiran, Ghosh Sujoy Kumar, Sen Shrabanee, Mandal Dipankar

机构信息

Organic Nano-Piezoelectric Device Laboratory, Department of Physics, Jadavpur University, Kolkata 700032, India. Department of Electronics, Netaji Nagar Day College, 170/436 N. S. C Bose Road, Kolkata 700092, India.

出版信息

Nanotechnology. 2016 Nov 4;27(44):445403. doi: 10.1088/0957-4484/27/44/445403. Epub 2016 Sep 29.

DOI:10.1088/0957-4484/27/44/445403
PMID:27680679
Abstract

Polyvinylidene fluoride (PVDF) films are filled with various mass fractions (wt%) of zinc oxide nanoparticles (ZnO-NPs) to fabricate the high performance of a wearable polymer composite nanogenerator (PCNG). The ZnO-NPs can induced a fully γ-crystalline phase in PVDF, where traditional electrical poling is not necessary for the generation of piezoelectric properties. The PCNG delivers up to 28 V of open circuit voltage and 450 nA of short circuit current by simple repeated human finger imparting (under a pressure amplitude of 8.43 kPa) that generates sufficient power to turn on at least 48 commercial blue light emitting diodes (LEDs) instantly. Furthermore, it also successfully charged the capacitors, signifying practical applicability as a piezoelectric based nanogenerator for self-powering devices. The applicability of PCNG by wearable means is clarified when it gives rise to a sensible response, say up to 400 mV of output voltage synchronized with the PCNG embedded human finger in a bending and releasing gesture. UV-visible absorption spectral analysis revealed the possibility of estimating a change in the optical band gap value (E ), refractive index (n) and optical activation energy (E ) in different concentrations of ZnO-NP incorporated PVDF nanocomposite films, and it possesses a useful methodology where ZnO-NPs can be used as an optical probe. Near blue light emission is observed from photoluminescence spectra, which are clearly shown from a Commission Internationale de L'Eclairage (CIE) diagram. The piezoelectric charge coefficient of the nanocomposite film is estimated to be -6.4 pC/N, where even electrical poling treatment is not employed. In addition, dielectric properties have been studied to understand the role of molecular kinetic and interfacial polarization occurring in nanocomposite films at different applied frequencies.

摘要

聚偏二氟乙烯(PVDF)薄膜填充了不同质量分数(wt%)的氧化锌纳米颗粒(ZnO-NPs),以制造高性能的可穿戴聚合物复合纳米发电机(PCNG)。ZnO-NPs可在PVDF中诱导出完全的γ晶相,在这种情况下,产生压电性能无需传统的电场极化。通过简单的重复手指按压(压力幅值为8.43 kPa),PCNG可提供高达28 V的开路电压和450 nA的短路电流,产生的电量足以立即点亮至少48个商用蓝色发光二极管(LED)。此外,它还成功为电容器充电,这表明其作为基于压电的自供电设备纳米发电机具有实际应用价值。当PCNG在弯曲和释放手势中与嵌入人体手指的PCNG同步产生高达400 mV的输出电压等明显响应时,可明确其通过可穿戴方式的适用性。紫外可见吸收光谱分析揭示了估计不同浓度ZnO-NP掺入的PVDF纳米复合薄膜中光学带隙值(E)、折射率(n)和光学激活能(E)变化的可能性,并且它拥有一种有用的方法,其中ZnO-NPs可用作光学探针。从光致发光光谱中观察到近蓝光发射,这在国际照明委员会(CIE)图中清晰显示。纳米复合薄膜的压电电荷系数估计为-6.4 pC/N,即使未采用电场极化处理。此外,还研究了介电性能,以了解在不同施加频率下纳米复合薄膜中发生的分子动力学和界面极化的作用。

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