Flexible nano-ZnO/polyvinylidene difluoride piezoelectric composite films as energy harvester

被引:0
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作者
Ritamay Bhunia
Shirsendu Das
Saikat Dalui
Shamima Hussain
Rajib Paul
Radhaballav Bhar
Arun Kumar Pal
机构
[1] Jadavpur University,Department of Instrumentation Science, USIC Building
[2] UGC-DAE CSR,Department of Physics
[3] Kalpakkam Node,undefined
[4] Sonamukhi College,undefined
来源
Applied Physics A | 2016年 / 122卷
关键词
PVDF; Output Voltage; Composite Film; Alternate Current; PVDF Film;
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摘要
Nanogenerators (NGs) which harvest energy from mechanical vibration have attracted more attention in the past decade. Piezoelectric materials are the most promising candidates for developing NGs. Flexible free-standing nano-ZnO/PVDF composite films are prepared by incorporating different amounts of nano-ZnO fillers in PVDF matrix using sol–gel technique. Poled films show enhanced dielectric constant. The above free-standing films, with appropriate contacts, are subjected to energy harvesting studies. The output voltage increases with nano-ZnO loading in the PVDF matrix and shows enhanced effect for the poled films. Piezoelectric properties are investigated by measuring the piezoelectric charge constant (d33) and piezoelectric voltage constant (g33). A maximum AC output voltage ~4 V and output power of the order of few nanowatts are recorded for the nanogenerator which is used to light a red LED using a rectifying circuit through the discharging of a capacitor.
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