4.8 Article

Enhanced Piezoelectric Energy Harvesting Performance of Flexible PVDF-TrFE Bilayer Films with Graphene Oxide

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 8, 期 1, 页码 521-529

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.5b09502

关键词

nanogenerator; PVDF-TrFE; graphene oxide; electrostatic energy harvesting; enhanced Youngs modulus

资金

  1. National Research Foundation Competitive Research Programme [NRF-CRP-13-2014-02]
  2. NTU-HUJ-BGU Nanomaterials for Energy and Water Management Programme under the Campus for Research Excellence and Technological Enterprise (CREATE) - National Research Foundation, Prime Minister's Office, Singapore
  3. Nanyang Technological University, Singapore

向作者/读者索取更多资源

Ferroelectric materials have attracted interest in recent years due to their application in energy harvesting owing to its piezoelectric nature. Ferroelectric polymers are flexible and can sustain larger strains compared to inorganic counterparts, making them attractive for harvesting energy from mechanical vibrations. Herein, we report, for the first time, the enhanced piezoelectric energy harvesting performance of the bilayer films of poled poly(vinylidene fluoride-trifluoroethylene) [PVDF-TrFE] and graphene oxide (GO). The bilayer film exhibits superior energy harvesting performance with a voltage output of 4 V and power output of 4.41 mu Wcm(-2) compared to poled PVDF-TrFE films alone (voltage output of 1.9 V and power output of 1.77 mu Wcm(-2)). The enhanced voltage and power output in the presence of GO film is due to the combined effect of electrostatic contribution from graphene oxide, residual tensile stress, enhanced Youngs modulus of the bilayer films, and the presence of space charge at the interface of the PVDF-TrFE and GO films, arising from the uncompensated polarization of PVDF-TrFE. Higher Youngs modulus and dielectric constant of GO led to the efficient transfer of mechanical and electrical energy.

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