4.7 Article

Enhancement of Piezoelectric Properties of Flexible Nanofibrous Membranes by Hierarchical Structures and Nanoparticles

期刊

POLYMERS
卷 14, 期 20, 页码 -

出版社

MDPI
DOI: 10.3390/polym14204268

关键词

piezoelectric property; polyacrylonitrile; poly(vinylidene fluoride); ZnO nanorods; electrospinning

资金

  1. National Natural Science Foundation, China [52073224]
  2. Doctoral Scientific Research Foundation of Xi'an Polytechnic University [BS15015]
  3. Thousand Talents Program of Shaanxi Province
  4. San-qin Scholar Foundation of Shaanxi Province
  5. Key Research and Development Program of Xianyang Science and Technology Bureau, China [2021ZDYF-GY-0035]
  6. Advanced Manufacturing Technology Program of Xi'an Science and Technology Bureau, China [21XJZZ0019]

向作者/读者索取更多资源

By utilizing hierarchical structures and processing technology, a PAN-PVDF/ZnO PENG nanogenerator was designed, which improved both mechanical and piezoelectric properties significantly and successfully powered commercial LEDs.
Piezoelectric nanogenerators (PENGs) show superiority in self-powered energy converters and wearable electronics. However, the low power output and ineffective transformation of mechanical energy into electric energy l limit the role of PENGs in energy conversion and storage devices, especially in fiber-based wearable electronics. Here, a PAN-PVDF/ZnO PENG with a hierarchical structure was designed through electrospinning and a hydrothermal reaction. Compared with other polymer nanofibers, the PAN-PVDF/ZnO nanocomposites not only showed two distinctive diameter distributions of uniform nanofibers, but also the complete coverage and embedment of ZnO nanorods, which brought about major improvements in both mechanical and piezoelectric properties. Additionally, a simple but effective method to integrate the inorganic nanoparticles into different polymers and regulate the hierarchical structure by altering the types of polymers, concentrations of spinning solutions, and growth conditions of nanoparticles is presented. Further, the designed P-PVDF/ZnO PENG was demonstrated as an energy generator to successfully power nine commercial LEDs. Thus, this approach reveals the critical role of hierarchical structures and processing technology in the development of high-performance piezoelectric nanomaterials.

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