增强了聚二甲基硅氧烷- BaTiO3基柔性压电纳米发电机用于触觉模仿应用的能量收集能力

ty10086 提交于 周三, 08/25/2021 - 15:57
文章英文标题
Enhanced energy harvesting ability of polydimethylsiloxane-BaTiO3-based flexible piezoelectric nanogenerator for tactile imitation application
正文
近年来,可穿戴式压电纳米发电机( PENG )的发展引起了人们的广泛关注,尤其是在选择高压电系数的无铅压电材料方面。钛酸钡( BTO )是一种环境友好型压电陶瓷。由BTO基压电填料衍生的PENGs近来引起了广泛关注。然而,在追求高输出性能时,柔性电极的探索和仿触觉功能的可穿戴PENGs的应用通常被忽略。采用冷冻干燥法制备了0.82 Ba ( Ti 0.89 Sn 0.11 ) O3-0.18 ( Ba 0.7 Ca 0.3 ) TiO3组成的多孔压电填料,然后将聚二甲基硅氧烷( PDMS )填充到压电陶瓷的微孔中,形成了具有明显三维互联结构且分布均匀的无机压电材料。掺杂和结构修饰均能提高BTO基PENG的输出性能,其中合理的掺杂对提高当前PENG系统的电输出起着重要作用。为实现全柔性压电纳米发电机( PENG ),采用集成PDMS的银纳米线网络作为柔性电极,采用真空过滤与后续干转移工艺相结合的技术制备。PENG在2   Hz的垂直力35   N下,可输出最大开路电压( V OC )为39   V,短路电流( I SC )为2.9  μA,最大瞬时功率为24.2  μW。此外,该器件在受到外压或弯曲应力作用时能有效地显示输出电信号。垂直压应力下PENG的输出特性高于弯曲应力,COMSOL仿真也证实了这一点。PENG不仅可以用来收获数字关节运动等生物力学能量,还可以显示一种触觉感知的潜能。这项工作借助柔性PENG在无铅陶瓷和可穿戴模拟触摸接收传感器之间建立了深厚的关联,将为柔性电子画上一幅绚丽的画卷。
文章内容(英文)
The development of wearable piezoelectric nanogenerator (PENG) has recently drawn extensive attention, especially in selecting lead-free piezoelectric materials with high piezoelectric coefficients. Barium Titanate (BTO) is a kind of environment-friendly piezoelectric ceramics. PENGs derived from BTO based piezo-fillers have recently attracted broad concern. However, the exploration of flexible electrodes and the application of wearable PENGs functioned with imitating tactile have usually been ignored in the pursuit of high output performance. Herein, The porous piezoelectric fillers composed of 0.82Ba(Ti 0.89 Sn 0.11 )O 3 -0.18(Ba 0.7 Ca 0.3 )TiO 3 are prepared by a freeze-drying method, and then the polydimethylsiloxane (PDMS) is filled into the micropores of the piezoelectric ceramics, forming a distinctive 3D interconnected structure with evenly distributed inorganic piezoelectric materials. Both doping and structure modification can boost the output performance of the BTO-based PENG, from which the rational doping plays a major role in enhancing the electrical output in the current PENG system. To realize fully flexible piezoelectric nanogenerator (PENG), sliver nanowires network integrated with PDMS is adopted as the flexible electrodes, which was fabricated by the techniques combining vacuum filtration with subsequent dry transfer process. The PENG can deliver a maximum open-circuit voltage ( V OC ) of 39 V and short-circuit ( I SC ) current of 2.9 μA under a vertical force of 35 N at 2 Hz, with the maximum instantaneous power of 24.2 μW. Moreover, the device can effectively exhibit electric output signal whenever subjected to external pressing or bending stress. The output performance of the PENG at via vertical pressing stress is higher than that bending stress, which is also confirmed by COMSOL simulation. The PENG can not only be employed to harvest biomechanical energy such as digital joints movement, but also display a potential for a tactile perception. This work has established a deep association between lead-free ceramic and wearable imitated touch reception sensors by virtue of flexible PENG, which will paint a magnificent picture for flexible electronics.
来源出处
Journal|[J]Nano EnergyVolume 83, 2021.
DOI
https://doi.org/10.1016/J.NANOEN.2021.105809

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