Electrospun Polyvinylidene Fluoride Nanogenerator with Hydrophobic Properties and Enhanced Energy Harvesting for Wearable and Wireless Sensing

被引:2
|
作者
Zhou, Jie [1 ]
Xu, Liqiang [1 ]
Zhang, Lun [1 ]
Zhang, Jihai [1 ]
Zhang, Aimin [1 ]
机构
[1] Sichuan Univ, Polymer Res Inst, State Key Lab Polymers Mat Engn China, Chengdu 610065, Peoples R China
基金
中国国家自然科学基金;
关键词
PVDF-based piezoelectric composites; piezoelectric properties; hydrophobic self-cleaning; wireless sensing; self-powered; wearable sensor; PVDF; NANOCOMPOSITE; P(VDF-TRFE); GENERATION; SYSTEMS; OCEAN; FILM;
D O I
10.1021/acsaelm.4c00053
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Polyvinylidene fluoride (PVDF) has better compliance and mechanical processing performance than traditional piezoelectric ceramic materials and is easy to process and mold. However, this also sacrifices part of the piezoelectric properties of PVDF. Therefore, polymer-piezoelectric ceramic composites were developed to balance this problem. Herein, self-polarized PVDF piezoelectric fibers with stable hydrophobicity and improved piezoelectric characteristics were prepared by using a quick and efficient electrostatic spinning process, specifically, dimethoxymethylvinylsilane-modified BaTiO3 (M-BTO) as a piezoelectric enhancer, which improved the dispersion of the filler and the piezoelectricity of the composites. As a result, the output voltage and current of the M-BTO/PVDF composite piezoelectric fiber reached 17.2 V and 421.1 nA, respectively. Moreover, the hydrophobic surface of the composite gives it excellent self-cleaning properties. In view of the excellent electromechanical conversion ability of the composites, the prepared piezoelectric nanogenerator can be used to detect different physiological signals in the human body. A simple wireless system is set up to enable the wireless transmission of piezoelectric signals. This study highlights an interfacial modification approach for the preparation of high-performance piezoelectric energy harvesters, providing a practical and potentially useful basis for human-machine interface applications.
引用
收藏
页码:2026 / 2038
页数:13
相关论文
共 50 条
  • [1] Enhanced Piezoelectricity of Electrospun Polyvinylidene Fluoride Fibers for Energy Harvesting
    Szewczyk, Piotr K.
    Gradys, Arkadiusz
    Kim, Sung Kyun
    Persano, Luana
    Marzec, Mateusz
    Kryshtal, Aleksandr
    Busolo, Tommaso
    Toncelli, Alessandra
    Pisignano, Dario
    Bernasik, Andrzej
    Kar-Narayan, Sohini
    Sajkiewicz, Pawel
    Stachewicz, Urszula
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (11) : 13575 - 13583
  • [2] Electrospun Polyvinylidene Fluoride-Magnesiochromite Nanofiber-Based Piezoelectric Nanogenerator for Energy Harvesting Applications
    Ponnan, Sathiyanathan
    Schmidt, Thomas Walter
    Li, Tianyuan
    Gunasekaran, Harini Bhuvaneswari
    Ke, Xixian
    Huang, Yajing
    Mubarak, Suhail
    Prabu, Arun Anand
    Weng, Zixiang
    Wu, Lixin
    ACS APPLIED POLYMER MATERIALS, 2021, 3 (10) : 4879 - 4888
  • [3] Polyvinylidene Fluoride/Aromatic Hyperbranched Polyester of Third-Generation-Based Electrospun Nanofiber as a Self-Powered Triboelectric Nanogenerator for Wearable Energy Harvesting and Health Monitoring Applications
    Gunasekhar, Ramadasu
    Sathiyanathan, Ponnan
    Reza, Mohammad Shamim
    Prasad, Gajula
    Prabu, Arun Anand
    Kim, Hongdoo
    POLYMERS, 2023, 15 (10)
  • [4] Enhanced Output Power Polyvinylidene Fluoride (PVDF) Electrospun Nanogenerator with High Fiber Alignment
    Yu Bin
    Yu Hao
    Mao Mengye
    Wang Hongzhi
    Zhu Meifang
    2015 IEEE 15TH INTERNATIONAL CONFERENCE ON NANOTECHNOLOGY (IEEE-NANO), 2015, : 932 - 935
  • [5] Flexible piezoelectric energy-harvesting nanogenerator using supersonically sprayed polyvinylidene fluoride and iron oxide nanocubes
    Joshi, Bhavana
    Lim, Woojin
    Kim, Taegun
    Samuel, Edmund
    Aldalbahi, Ali
    Periyasami, Govindasami
    Lee, Hae-Seok
    Yoon, Sam S.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2024, 994
  • [6] Efficient Energy Harvesting Using Processed Poly(vinylidene fluoride) Nanogenerator
    Gaur, Anupama
    Kumar, Chandan
    Tiwari, Shivam
    Maiti, Pralay
    ACS APPLIED ENERGY MATERIALS, 2018, 1 (07): : 3019 - 3024
  • [7] Enhanced dielectric properties of electrospun titanium dioxide/polyvinylidene fluoride nanofibrous composites
    Park, Hyun Ho
    Choi, Youngeun
    Park, Doo Jin
    Cho, Se Youn
    Yun, Young Soo
    Jin, Hyoung-Joon
    FIBERS AND POLYMERS, 2013, 14 (09) : 1521 - 1525
  • [8] A Flexible, Lightweight, and Wearable Triboelectric Nanogenerator for Energy Harvesting and Self-Powered Sensing
    Wu, Fan
    Li, Congju
    Yin, Yingying
    Cao, Ran
    Li, Hui
    Zhang, Xiuling
    Zhao, Shuyu
    Wang, Jiaona
    Wang, Bin
    Xing, Yi
    Du, Xinyu
    ADVANCED MATERIALS TECHNOLOGIES, 2019, 4 (01):
  • [9] Wearable Triboelectric Nanogenerator with Ground-Coupled Electrode for Biomechanical Energy Harvesting and Sensing
    Su, Kangyu
    Lin, Xiaobo
    Liu, Zhangwei
    Tian, Yun
    Peng, Zhengchun
    Meng, Bo
    BIOSENSORS-BASEL, 2023, 13 (05):
  • [10] Self-polarized electrospun polyvinylidene fluoride (PVDF) nanofiber for sensing applications
    Ghafari, Ehsan
    Lu, Na
    COMPOSITES PART B-ENGINEERING, 2019, 160 : 1 - 9