首页> 外文会议>Symposium on photovoltaics for the 21st century 8 >Effect of TiO_2 Microstructure and Introduction of Silver Nanoparticles on Conversion Efficiency of Sb_2S_3 Sensitized Semiconductor Solar Cells
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Effect of TiO_2 Microstructure and Introduction of Silver Nanoparticles on Conversion Efficiency of Sb_2S_3 Sensitized Semiconductor Solar Cells

机译:TiO_2微观结构的影响及其在SB_2S_3敏化半导体太阳能电池转换效率下的影响

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Sensitized semiconductor solar cells consisting of alternative heterojunction materials (TiO_2/Sb_2S_3/CuSCN) are characterized by an extremely thin absorber that allows effective charge transportation due to reduction in recombination. In these cells, Sb_2S_3 exhibited both positive and negative effects; it generated photocarriers and protected the cell from leakage current, but also behaved as a recombination center and increased the ohmic resistance. CuSCN was the additional critical factor of a cell performance with porous TiO_2. CuSCN deposited on top of the porous structure exhibited two effects: high ohmic resistance and control of effective Sb_2S_3 at pn junctions. To achieve maximization of photocarrier generation and minimization of recombination, silver nanoparticles, which express localized surface plasmons when illuminated, were then applied to Sb_2S_3 cells with compact TiO_2. The results revealed improved photoabsorption without having to increase the amount of Sb_2S_3, and revealed an improved Jsc from 0.66 mA/cm~2 to 1.88 mA/cm~2.
机译:由替代异质结材料(TiO_2 / SB_2S_3 / CUSCN组成的敏化半导体太阳能电池的特征在于极薄的吸收器,其允许由于重组的还原而有效充电运输。在这些细胞中,SB_2S_3表现出正面和负面影响;它产生光载体并保护电池免受漏电流,而且表现为重组中心并增加欧姆抗性。 CUSCN是具有多孔TiO_2的细胞性能的额外关键因素。沉积在多孔结构顶部的CUSCN表现出两种影响:高欧姆抗性和对PN结的有效SB_2S_3的控制。为了实现光载体产生的最大化和重组的最小化,用致密的TiO_2施加在照射时表达局部表面等离子体的银纳米颗粒。结果显示出改善的光吸收,而不必增加Sb_2S_3的量,并显示出0.66mA / cm〜2至1.88mA / cm〜2的改进的JSC。

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