Self-powered flexible Fe-doped RGO/PVDF nanocomposite: an excellent material for a piezoelectric energy harvester

被引:325
作者
Karan, Sumanta Kumar [1 ]
Mandal, Dipankar [2 ]
Khatua, Bhanu Bhusan [1 ]
机构
[1] Indian Inst Technol, Ctr Mat Sci, Kharagpur 721302, W Bengal, India
[2] Jadavpur Univ, Dept Phys, Organ Nanopiezoelect Device Lab, Kolkata 700032, India
关键词
POLY(VINYLIDENE FLUORIDE); GRAPHENE; PHASE; COMPOSITE; NANOGENERATOR; REDUCTION; POLYMORPH; OXIDE;
D O I
10.1039/c5nr02067k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this work, we report the superior piezoelectric energy harvester ability of a non-electrically poled Fe-doped reduced graphene oxide (Fe-RGO)/poly(vinylidene fluoride) (PVDF) nanocomposite film prepared through a simple solution casting technique that favors the nucleation and stabilization of approximate to 99% relative proportion of polar gamma-phase. The piezoelectric energy harvester was made with non-electrically poled Fe-RGO/PVDF nanocomposite film that gives an open circuit output voltage and short circuit current up to 5.1 V and 0.254 mu A by repetitive human finger imparting. The improvement of the output performance is influenced by the generation of the electroactive polar gamma-phase in the PVDF, due to the electrostatic interactions among the -CH2-/-CF2-dipoles of PVDF and the delocalized pi-electrons and remaining oxygen functionalities of Fe-doped RGO via ion-dipole and/or hydrogen bonding interactions. Fourier transform infrared spectroscopy (FT-IR) confirmed the nucleation of the polar gamma-phase of PVDF by electrostatic interactions and Raman spectroscopy also supported the molecular interactions between the dipoles of PVDF and the Fe-doped RGO nanosheets. In addition, the nanocomposite shows a higher electrical energy density of approximate to 0.84 J cm(-3) at an electric field of 537 kV cm(-1), which indicates that it is appropriate for energy storage capabilities. Moreover, the surface of the prepared nanocomposite film is electrically conducting and shows an electrical conductivity of approximate to 3.30 x 10(-3) S cm(-1) at 2 wt% loading of Fe-RGO.
引用
收藏
页码:10655 / 10666
页数:12
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