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AgNWs@TiO2 and AgNPs@TiO2 Double-Layer Photoanode Film Improving Light Capture and Application under Low Illumination

机译:Agnws @ TiO2和Agnps @ TiO2双层Photoanode薄膜在低照明下提高光捕获和应用

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摘要

In this article, silver nanowires (AgNWs) were prepared and introduced into the double-layer photoanode of dye-sensitized solar cells (DSSCs). Silver nanowires with a diameter of about 50–60 nm and a length of 1–2 mm were prepared by the polyol method. The power conversion efficiency of the double-layer photoanode DSSC made of AgNWs@TiO2 and AgNPs@TiO2 composite materials is 6.38%. Compared with the unmodified DSSC, the composite double-layer photoanode combined with AgNWs and AgNPs increased the efficiency of DSSC by 58.7%. This increased efficiency was mainly due to the localized surface plasmon resonance effect caused by AgNPs and AgNWs. The increased light collection was caused by the plasma effect of AgNPs, and it increased the short-circuit photocurrent density (JSC). The conductive properties of AgNWs improved interface charge transfer and delay charge recombination. The effect of a low light environment on DSSC efficiency was also investigated, and the best photovoltaic conversion efficiency under an irradiance of 10 mW/cm2 was found to be 8.78%.
机译:在本文中,制备银纳米线(AgNW)并将其引入染料敏化太阳能电池(DSSCs)的双层光电码。通过多元醇法制备直径为约50-60nm的银纳米线和长度为1-2mm。由AgNWS @ TiO2和AgNPS @ TiO2复合材料制成的双层PhotoNode DSSC的电力转换效率为6.38%。与未修改的DSSC相比,复合双层光电码与AGNW和AGNP相结合,增加了DSSC的效率58.7%。这种提高的效率主要是由于AGNP和AGNW引起的局部表面等离子体共振效应。增加的光收集是由AgNP的血浆效应引起的,并且增加了短路光电流密度(JSC)。 AGNW的导电性能改善了界面电荷转移和延迟电荷重组。还研究了低光环境对DSSC效率的影响,并且发现10mW / cm2的辐照度下的最佳光伏转换效率为8.78%。

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