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基于电纺 Eu 掺杂 P(VDF-HFP)/石墨烯复合纳米纤维的可穿戴纳米发电机,用于自供电语音识别,提高了其灵敏度。

Improved sensitivity of wearable nanogenerators made of electrospun Eu doped P(VDF-HFP)/graphene composite nanofibers for self-powered voice recognition.

机构信息

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

出版信息

Nanotechnology. 2016 Dec 9;27(49):495501. doi: 10.1088/0957-4484/27/49/495501. Epub 2016 Nov 10.

Abstract

Composite nanofibers of Eu doped poly(vinylidene fluoride-co-hexafluoropropylene) (P(VDF-HFP))/graphene are prepared by the electrospinning technique for the fabrication of ultrasensitive wearable piezoelectric nanogenerators (WPNGs) where the post-poling technique is not necessary. It is found that the complete conversion of the piezoelectric β-phase and the improvement of the degree of crystallinity is governed by the incorporation of Eu and graphene sheets into P(VDF-HFP) nanofibers. The flexible nanocomposite fibers are associated with a hypersensitive electronic transition that results in an intense red light emission, and WPNGs also have the capability of detecting external pressure as low as ~23 Pa with a higher degree of acoustic sensitivity, ~11 V Pa, than has ever been previously reported. This means that ultrasensitive WPNGs can be utilized to recognize human voices, which suggests they could be a potential tool in the biomedical and national security sectors. The capacitor's ability to charge from abundant environmental vibrations, such as music, wind, body motion, etc, drives WPNGs as a power source for portable electronics. This fact may open up the prospect of using the Eu doped P(VDF-HFP)/graphene composite electrospun nanofibers, with their multifunctional properties such as vibration sensitivity, wearability, red light emission capability and piezoelectric energy harvesting, for various promising applications in portable electronics, health care monitoring, noise detection and security monitoring.

摘要

Eu 掺杂聚偏二氟乙烯-六氟丙烯(P(VDF-HFP))/石墨烯复合纳米纤维通过静电纺丝技术制备,用于制造超灵敏可穿戴压电纳米发电机(WPNG),而无需后极化技术。研究发现,Eu 和石墨烯片掺入 P(VDF-HFP)纳米纤维完全转化为压电 β 相并提高结晶度。柔性纳米复合纤维与超敏电子跃迁有关,导致强烈的红光发射,并且 WPNG 还具有检测低至约 23 Pa 的外部压力的能力,其声敏度比以前报道的更高,约为 11 V Pa。这意味着超灵敏的 WPNG 可以用于识别人类声音,这表明它们可能成为生物医学和国家安全领域的潜在工具。电容器能够从音乐、风、身体运动等丰富的环境振动中充电,为 WPNG 作为便携式电子产品的电源提供了动力。这一事实可能为使用具有振动敏感性、可穿戴性、红光发射能力和压电能量收集等多功能特性的 Eu 掺杂 P(VDF-HFP)/石墨烯复合电纺纳米纤维开辟前景,用于各种有前途的应用,包括便携式电子产品、医疗保健监测、噪声检测和安全监测。

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