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在用于生物机械能收集的压电复合纳米发电机中结合一维和三维纳米填料的益处。

The benefits of combining 1D and 3D nanofillers in a piezocomposite nanogenerator for biomechanical energy harvesting.

作者信息

Hanani Zouhair, Izanzar Ilyasse, Merselmiz Soukaina, Amjoud M'barek, Mezzane Daoud, Ghanbaja Jaafar, Saadoune Ismael, Lahcini Mohammed, Spreitzer Matjaž, Vengust Damjan, El Marssi Mimoun, Kutnjak Zdravko, Luk'yanchuk Igor A, Gouné Mohamed

机构信息

IMED-Lab, Cadi Ayyad University Marrakesh 40000 Morocco

ICMCB, University of Bordeaux Pessac 33600 France.

出版信息

Nanoscale Adv. 2022 Sep 26;4(21):4658-4668. doi: 10.1039/d2na00429a. eCollection 2022 Oct 25.

Abstract

Mechanical energy harvesting using piezoelectric nanogenerators (PNGs) offers an attractive solution for driving low-power portable devices and self-powered electronic systems. Here, we designed an eco-friendly and flexible piezocomposite nanogenerator (c-PNG) based on H(ZrTi)O nanowires (HZTO-nw) and BaCaZrTiO multipods (BCZT-mp) as fillers and polylactic acid (PLA) as a biodegradable polymer matrix. The effects of the applied stress amplitude, frequency and pressing duration on the electric outputs in the piezocomposite nanogenerator (c-PNG) device were investigated by simultaneous recording of the mechanical input and the electrical outputs. The fabricated c-PNG shows a maximum output voltage, current and volumetric power density of 11.5 V, 0.6 μA and 9.2 mW cm, respectively, under cyclic finger imparting. A high-pressure sensitivity of 0.86 V kPa (equivalent to 3.6 V N) and fast response time of 45 ms were obtained in the dynamic pressure sensing. Besides this, the c-PNG demonstrates high-stability and durability of the electrical outputs for around three months, and can drive commercial electronics (charging capacitor, glowing light-emitting diodes and powering a calculator). Multi-physics simulations indicate that the presence of BCZT-mp is crucial in enhancing the piezoelectric response of the c-PNG. Accordingly, this work reveals that combining 1D and 3D fillers in a polymer composite-based PNG could be beneficial in improving the mechanical energy harvesting performances in flexible piezoelectric nanogenerators for application in electronic skin and wearable devices.

摘要

利用压电纳米发电机(PNG)收集机械能为驱动低功耗便携式设备和自供电电子系统提供了一种有吸引力的解决方案。在此,我们设计了一种环保且灵活的压电复合纳米发电机(c-PNG),它以H(ZrTi)O纳米线(HZTO-nw)和BaCaZrTiO多脚体(BCZT-mp)作为填料,聚乳酸(PLA)作为可生物降解的聚合物基体。通过同时记录机械输入和电输出,研究了施加的应力幅度、频率和按压持续时间对压电复合纳米发电机(c-PNG)装置电输出的影响。所制备的c-PNG在手指循环施加作用下,最大输出电压、电流和体积功率密度分别为11.5 V、0.6 μA和9.2 mW/cm³。在动态压力传感中获得了0.86 V/kPa(相当于3.6 V/N)的高压灵敏度和45 ms的快速响应时间。除此之外,c-PNG的电输出在大约三个月内表现出高稳定性和耐久性,并且能够驱动商业电子产品(为电容器充电、点亮发光二极管以及为计算器供电)。多物理场模拟表明,BCZT-mp的存在对于增强c-PNG的压电响应至关重要。因此,这项工作表明,在基于聚合物复合材料的PNG中结合一维和三维填料可能有利于提高柔性压电纳米发电机在电子皮肤和可穿戴设备应用中的机械能收集性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70cd/9595181/51d912198bf8/d2na00429a-f1.jpg

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