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Zinc oxide piezoelectric nano-generators for low frequency applications

机译:低频应用的氧化锌压电纳米发电机

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Piezoelectric Zinc Oxide (ZnO) nanogenerators (NGs) have been fabricated for low frequency (<100 Hz) energy harvesting applications. Different types of NGs based on ZnO nanostructures have been carefully developed, and studied for testing under different kinds of low frequency mechanical deformations. Well aligned ZnO nanowires (NWs) possessing high piezoelectric coefficient were synthesized on flexible substrates using the low temperature hydrothermal route. These ZnO NWs were then used in different configurations to demonstrate different low frequency energy harvesting devices. Using piezoelectric ZnO NWs, we started with the fabrication of a sandwiched NG for a handwriting enabled energy harvesting device based on a thin silver layer coated paper substrate. Such device configurations can be used for the development of electronic programmable smart paper. Further, we developed this NG to work as a triggered sensor for a wireless system using footstep pressure. These studies demonstrate the feasibility of using a ZnO NWs piezoelectric NG as a low-frequency self-powered sensor, with potential applications in wireless sensor networks. After that, we investigated and fabricated a sensor on a PEDOT: PSS plastic substrate using a one-sided growth and double-sided growth technique. For the first growth technique, the fabricated NG has been used as a sensor for an acceleration system; while the fabricated NG by the second technique works as an anisotropic direction sensor. This fabricated configuration showed stability for sensing and can be used in surveillance, security, and auto-Mobil applications. In addition to that, we investigated the fabrication of a sandwiched NG on plastic substrates. Finally, we demonstrated that doping ZnO NWs with extrinsic elements (such as Ag) will lead to the reduction of the piezoelectric effect due to the loss of crystal symmetry. A brief summary into future opportunities and challenges is also presented.
机译:压电氧化锌(ZnO)纳米发电机(NGs)已被制造用于低频(<100 Hz)能量收集应用。精心开发了基于ZnO纳米结构的不同类型的NG,并研究了它们在不同类型的低频机械变形下的测试。利用低温水热法在柔性衬底上合成了具有高压电系数的取向良好的ZnO纳米线(NWs)。然后将这些ZnO NW用于不同的配置,以演示不同的低频能量收集设备。使用压电ZnO NW,我们开始制造夹层NG,用于基于薄银层涂层的纸质基材的可手写的能量收集设备。这样的设备配置可以用于电子可编程智能纸的开发。此外,我们开发了这种NG,可以用作使用脚步压力的无线系统的触发传感器。这些研究证明了将ZnO NWs压电NG用作低频自供电传感器的可行性,并在无线传感器网络中具有潜在的应用。之后,我们使用单面生长和双面生长技术在PEDOT:PSS塑料基板上研究并制造了传感器。对于第一种生长技术,已将制成的NG用作加速系统的传感器。而通过第二种技术制造的NG可以用作各向异性方向传感器。这种制造的配置显示出传感的稳定性,可用于监视,安全和自动美孚应用。除此之外,我们还研究了在塑料基板上夹层NG的制造。最后,我们证明了用非本征元素(例如Ag)掺杂ZnO NWs会由于晶体对称性的丧失而导致压电效应的降低。还简要介绍了未来的机遇和挑战。

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