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Electrospun Microfibrous Membranes with Atmospheric-Pressure Plasma Surface Modification for the Application in Dye-Sensitized Solar Cells

机译:常压等离子体表面改性的电纺微纤维膜在染料敏化太阳能电池中的应用

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Electrospun poly(vinylidenefluoride-co-hexafluoropropylene) (PVDF-HFP) microfibrous membrane was modified by cyclonic atmospheric-pressure plasma in this work. The gas-phase temperature of plasma state was <90℃, indicating that this plasma could treat electrospun PVDF-HFP membrane without heat damages. Surface properties of the plasma-modified electrospun PVDF-HFP membranes were examined by the static contact angle (CA) analysis. It was observed that such cyclonic atmospheric-pressure plasma was useful in electrospun PVDF-HFP membrane surface modification; for example, the water CA was reduced from 137 to <30° with only lmin treatment time. Field-emission scanning electron microscopy was used to determine the changes in surface features of the electrospun PVDF-HFP membrane after plasma treatment. A dye-sensitized solar cell (DSSC) fabricated with the plasma-modified electrospun PVDF-HFP membrane electrolyte revealed good conversion efficiency. This work proved that surface modification of the electrospun PVDF-HFP microfibrous membrane by cyclonic atmospheric-pressure plasma was an innovative method for DSSC applications.
机译:在这项工作中,通过旋风大气压等离子体对静电纺丝聚偏二氟乙烯-共-六氟丙烯(PVDF-HFP)微纤维膜进行了改性。等离子体状态下的气相温度<90℃,表明该等离子体可以处理电纺PVDF-HFP膜而不会产生热损伤。通过静态接触角(CA)分析检查了等离子体改性的电纺PVDF-HFP膜的表面性能。观察到这种旋风大气压等离子体可用于电纺PVDF-HFP膜的表面改性。例如,仅用1分钟的处理时间,水的CA就从137降低到了<30°。场发射扫描电子显微镜用于确定等离子处理后电纺PVDF-HFP膜表面特征的变化。用等离子体改性的电纺PVDF-HFP膜电解质制成的染料敏化太阳能电池(DSSC)显示出良好的转化效率。这项工作证明了通过旋风大气压等离子体对电纺PVDF-HFP微纤维膜进行表面改性是DSSC应用的一种创新方法。

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