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首页> 外文期刊>Physica, B. Condensed Matter >Intensifying energy density, dielectric and mechanical properties of electroactive beta-PVDF/f-BTO nanocomposites
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Intensifying energy density, dielectric and mechanical properties of electroactive beta-PVDF/f-BTO nanocomposites

机译:电活性β-PVDF / F-BTO纳米复合材料的增强能量密度,电介质和力学性能

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摘要

In this paper, we report the enhancement of energy density and consequently energy harvesting efficiency of PVDF/f-BaTiO3 nanocomposite. Synthesis of semicrystalline beta phase PVDF, PVDF-BTO and PVDF-BTOf composites by spin coating method and their characteristics investigations have been reported. The energy storage density of composite with modified structure was largely increased and was found to be 0.242 J/cm(3) at 10 MV/m with 68% energy harvesting efficiency. Maximum dielectric constant was found to be 230 at 1 Hz for PVDF-BTOf composite. Maximum capacitance obtained for PVDF-BTOf composite was 816 mu F. From CV and chronopotentiometry scan investigation, the maximum power density was found to be 59.5 W/kg with specific energy density of 0.082 Wh/kg for PVDF-BTO composite. Tensile strength and young's modulus of PVDF-BTOf composite are found to be 6.37 MPa and 48.7 MPa respectively. These results demonstrate a potential way to enhance the performance of composites for energy harvestor, capacitor etc.
机译:在本文中,我们报告了P​​VDF / F-BATIO3纳米复合材料的能量密度的提高及因此能量收集效率。据报道,通过旋涂法对半结晶β相PVDF,PVDF-BTO和PVDF-BTOF复合材料及其特征研究。复合材料具有改性结构的能量储存密度大大增加,发现为10mV / m的0.242J / cm(3),能量收获效率为68%。对于PVDF-BTOF复合材料,发现最大介电常数为230,为1Hz。对于PVDF-BTOF复合材料获得的最大电容为816μF。从CV和时分时间计量扫描研究中,发现最大功率密度为59.5W / kg,具有0.082wH / kg的PVDF-BTO复合材料的特定能量密度。 PVDF-BTOF复合材料的拉伸强度和杨氏模量分别为6.37MPa和48.7MPa。这些结果表明了增强能量收割机,电容器等复合材料性能的潜在方法。

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