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A novel TiO2 nanoparticles/nanowires composite core with ZrO2 nanoparticles shell coating photoanode for high-performance dye-sensitized solar cell based on different electrolytes

机译:一种新型TiO2纳米颗粒/纳米线复合芯,具有ZrO2纳米颗粒壳涂层光阳极,用于基于不同电解质的高性能染料敏化太阳能电池

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摘要

e novel TiO2 nanopartilces/nanowires (TNPWs) composite with ZrO2 nanoparticles (ZNPs) shell-coated photoanodes were prepared to fabricate high-performance dye-sensitized solar cell (DSSC) based on different types of electrolytes. Hafnium oxide (HfO) is a new and efficient blocking layer material applied over the TNPWs-ZNPs core-shell photoanode film. TiO2 nanoparticles (TNPs) and TiO2 nanowires (TNWs) were characterized by X-ray diffractome-ter (XRD), scanning electron microscopy (SEM), and transmission electron microscopy (TEM). DSSCs were fabricated using the novel photoanodes with an organic sensitizer D149 dye and different types of electrolytes namely liquid electrolyte, ionic liquid electrolyte, solid-state electrolyte, and quasi-solid-state electrolyte. The DSSC-4 made through the novel core-shell photoanode using quasi-solid-state electrolyte showed better photocurrent efficiency (PCE) as compared to the other DSSCs. It has such photocurrent-voltage characteristics: short circuit photocurrent (Jsc)=19 mA/cm~2, the open circuit voltage (Voc)=650 mV, fill factor (FF)=65 %, and PCE (n)=8.03 %. The improved performance of DSSC-4 is ascribed to the core-shell with blocking layer photoanode could increased electron transport and suppressed recombination of charge carriers at the TNPWs-ZNPs/dye/electrolyte interface.
机译:通过ZrO2纳米颗粒(ZnPS)壳涂覆的光阳极的E新型TiO2纳米颗粒/纳米线(TNPWS)复合材料制备基于不同类型的电解质制造高性能染料敏化太阳能电池(DSSC)。氧化铪(HFO)是施加在TNPWS-ZnPS核心壳光电膜上的新型和有效的阻挡层材料。通过X射线衍射 - 三(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)表征TiO2纳米颗粒(TNW)和TNWS)和TIO2纳米线(TNWS)。使用具有有机敏化剂D149染料和不同类型的电解质即液体电解质,离子液体电解质,固态电解质和准固态电解质的不同类型的电解质制造DSSCs。与其他DSSC相比,通过使用准固态电解质的新型核心壳光电码制成的DSSC-4显示出更好的光电流效率(PCE)。它具有这种光电流 - 电压特性:短路光电流(JSC)= 19 mA / cm〜2,开路电压(VOC)= 650 mV,填充因子(FF)= 65%,而PCE(n)= 8.03% 。 DSSC-4的改进性能与阻塞层光电偶联的核心壳可以增加电子传输并在TNPWS-ZnP /染料/染料/电解质界面处抑制电荷载体的重组。

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