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Enhanced light absorption and charge recombination control in quantum dot sensitized solar cells using copper and manganese doped cadmium sulfide quantum dots

机译:增强的光吸收和电荷复合控制量子点敏化太阳能电池使用铜和锰掺杂硫化镉量子点

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摘要

In this work, photovoltaic devices with CdSe QDs-photoanodes doped Cu and Mn metals using the Successive ionic layer adsorption and reaction method for high-efficiency performance. Here, the molar dopant of Cu was studied from 0% to 5%, while Mn molar was changed between 0% and 40% to optimize conditional experiment. This result shows an increase of current density in both CdSe doped on Cu and Mn as a result of the enhancing light absorption and reducing recombination when a ZnS layer was used as passivation. In fact, a high 4.24% of efficiency for CdSe doped on Cu and 3.9% of efficiency for CdSe doped on Mn were archived comparing with pure CdSe QDs.
机译:在这个工作中,与CdSe光伏设备QDs-photoanodes掺杂铜和锰金属使用连续离子层吸附和反应方法高效性能。摩尔掺杂剂研究了铜从0%提高到5%,虽然Mn摩尔被改变在0%和40%之间优化条件实验。CdSe显示了电流密度的增加在铜和锰掺杂增强的结果光吸收和减少重组时一层的硫化锌是用作钝化。高CdSe掺杂铜和4.24%的效率3.9%的效率对CdSe掺杂锰存档与量子点纯CdSe进行比较。

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