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Flexible nano-GFO/PVDF piezoelectric-polymer nano-composite films for mechanical energy harvesting

机译:柔性纳米GFO / PVDF压电 - 聚合物纳米复合薄膜,用于机械能收割

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Owing to the persistent quest of renewable energy technology, piezoelectric energy harvesters are gathering considerable research interest due to their potential in driving microelectronic devices with small power requirement. Electrical energy (milli to microwatt range) is generated from mechanical counterparts such as vibrations of machines, human motion, flowing water etc. based on the principles of piezoelectricity. Flexible high piezoelectric constant (d33) ceramic/polymer composites are crucial components for fabricating these energy harvesters. The polymer composites composed of gallium ferrite nanoparticles and polyvinylidene fluoride (PVDF) as the matrix have been synthesized by solvent casting method. First, 8 wt. % PVDF was dissolved in DMF and then different compositions of GaFe0O3or GFO (10, 20, 30 wt. %) (with respect to PVDF only) nanocomposites were synthesized. The phase of the synthesized nanocomposites were studied by X- Ray diffraction which shows that with the increase in the GFO concentration, the intensity of diffraction peaks of PVDF steadily decreased and GFO peaks became increasingly sharp. As the concentration of GFO increases in the PVDF polymer matrix, band gap is also increased albeit to a small extent. The maximum measured output voltage and current during mechanical pressing and releasing conditions were found to be ~ 3.5 volt and 4 nA, respectively in 30 wt % GFO-PVDF composite, comparable to the available literature.
机译:由于可再生能源技术的执着追求,压电能量采集是由于其与小功率需求推动微电子器件的潜力相当大聚会的研究兴趣。电能(毫到微瓦范围)从机械对应物产生诸如机器的振动,人体运动,流基于压电原理水等。柔性高的压电常数(D33)的陶瓷/聚合物复合材料是用于制造这些能量采集关键组件。镓铁氧体纳米颗粒和聚偏氟乙烯(PVDF)作为基体构成的聚合物复合材料已经通过溶剂浇铸法合成。首先,8重量%PVDF溶解于DMF,然后GaFe0O3or GFO(10,20,30%(重量))的不同的组合物(相对于PVDF只)纳米复合材料合成。合成的纳米复合材料的相通过X射线衍射这表明与在GFO浓度的增加,PVDF的衍射峰的强度平稳降低和GFO峰变得日益尖锐研究。作为GFO的浓度在PVDF聚合物基质的增加,带隙也增加尽管在小范围内。期间机械按下和释放条件下的最大测量的输出电压和电流被发现是3.5〜伏和4 NA,分别在30%(重量)GFO-PVDF复合,可比现有的文献。

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