首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Dye-sensitized solar cells composed of photoactive composite photoelectrodes with enhanced solar energy conversion efficiency
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Dye-sensitized solar cells composed of photoactive composite photoelectrodes with enhanced solar energy conversion efficiency

机译:由光敏复合光电极组成的染料敏化太阳能电池,具有提高的太阳能转换效率

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Phosphor particles were introduced as a luminescent medium to improve the overall efficiency of dye sensitized solar cells (DSSCs). In the preparation process, TiO2 and phosphor particles were mixed to make photoelectrodes with bilayer (TiO2/mix), 3-layer (TiO2/mix/TiO2) and 4-layer (TiO2/mix/TiO2/mix) structures. The cell with the bilayer structure (TiO2/mix) after treating with TiCl4 solution showed the highest light-to-electric energy conversion efficiency (8.78%), which was similar to 25.8% higher than that of a cell with a pure TiO2 layer under the same experimental conditions. The improvement in the energy conversion efficiency of DSSCs was attributed to phosphor enhanced incident light-harvesting via up- and down-conversion luminescence processes, resulting in an increase in the photocurrent.
机译:引入磷光体颗粒作为发光介质,以提高染料敏化太阳能电池(DSSC)的整体效率。在制备过程中,将TiO2和荧光粉颗粒混合制成具有双层(TiO2 / mix),3层(TiO2 / mix / TiO2)和4层(TiO2 / mix / TiO2 / mix)结构的光电极。用TiCl4溶液处理后的双层结构(TiO2 / mix)电池显示出最高的光电转换效率(8.78%),比在下面的纯TiO2层的电池转换效率高25.8%。相同的实验条件。 DSSC的能量转换效率的提高归因于磷光体通过上转换和下转换发光过程增强了入射光的收集,从而导致了光电流的增加。

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