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基于ZnO纳米棒/柔性共轭共聚物杂化物通过全湿涂覆工艺制备的用于能量产生的纳米压电器件。

Nanopiezoelectric Devices for Energy Generation Based on ZnO Nanorods/Flexible-Conjugated Copolymer Hybrids Using All Wet-Coating Processes.

作者信息

Lee Yu-Ping, Lin Chieh-Chuan, Hsiao Chih-Chung, Chou Po-An, Cheng Yao-Yi, Hsieh Chih-Chen, Dai Chi-An

机构信息

Department of Chemical Engineering, National Taiwan University, Taipei 10617, Taiwan.

Institute of Polymer Science and Engineering, National Taiwan University, Taipei 10617, Taiwan.

出版信息

Micromachines (Basel). 2019 Dec 20;11(1):14. doi: 10.3390/mi11010014.

Abstract

In this study, nanopiezoelectric devices based on ZnO nanorod array/conducting polymers are fabricated for wearable power generation application. To replace the inorganic rigid indium-tin oxide (ITO) conducting coating commonly used in the nanogenerator devices, a series of flexible polyaniline-based conducting copolymers underlying the perpendicularly-oriented ZnO nanorod arrays has been synthesized with improved electric conductivity by the copolymerization of aniline and 3,4-ethylenedioxythiophene (EDOT) monomers in order to optimize the piezoelectric current collection efficiency of the devices. It is found that significantly higher conductivity can be obtained by small addition of EDOT monomer into aniline monomer solution using an in-situ oxidative polymerization method for the synthesis of the copolymer coatings. The highest conductivity of aniline-rich copolymer is 65 S/cm, which is 2.5 times higher than that for homopolymer polyaniline coating. Subsequently, perpendicularly-oriented ZnO nanorod arrays are fabricated on the polyaniline-based copolymer substrates via a ZnO nanoparticle seeded hydrothermal fabrication process. The surface morphology, crystallinity, orientation, and crystal size of the synthesized ZnO nanorod arrays are fully examined with various synthesis parameters for copolymer coatings with different monomer compositions. It is found that piezoelectric current generated from the devices is at least five times better for the device with improved electric conductivity of the copolymer and the dense formation of ZnO nanorod arrays on the coating. Therefore, these results demonstrate the advantage of using flexible -conjugated copolymer films with enhanced conductivity to further improve piezoelectric performance for future wearable energy harvesting application based on all wet chemical coating processes.

摘要

在本研究中,制备了基于ZnO纳米棒阵列/导电聚合物的纳米压电器件,用于可穿戴发电应用。为了取代纳米发电机器件中常用的无机刚性氧化铟锡(ITO)导电涂层,通过苯胺与3,4-乙撑二氧噻吩(EDOT)单体的共聚反应,合成了一系列位于垂直取向的ZnO纳米棒阵列下方的柔性聚苯胺基导电共聚物,以提高器件的压电电流收集效率。研究发现,采用原位氧化聚合法将少量EDOT单体添加到苯胺单体溶液中合成共聚物涂层时,可获得显著更高的电导率。富苯胺共聚物的最高电导率为65 S/cm,比均聚物聚苯胺涂层高2.5倍。随后,通过ZnO纳米颗粒种子水热制备工艺,在聚苯胺基共聚物基底上制备了垂直取向的ZnO纳米棒阵列。针对具有不同单体组成的共聚物涂层,利用各种合成参数对合成的ZnO纳米棒阵列的表面形貌、结晶度、取向和晶体尺寸进行了全面研究。研究发现,对于共聚物电导率提高且涂层上ZnO纳米棒阵列致密形成的器件,其产生的压电电流至少提高了五倍。因此,这些结果证明了使用具有增强电导率的柔性共轭共聚物薄膜来进一步提高压电性能,对于未来基于全湿化学涂层工艺的可穿戴能量收集应用具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22e0/7019830/ea282a3a479a/micromachines-11-00014-g001.jpg

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