Efficiency improvement of Ag-doped CdSe quantum dot sensitized solar cells

R. El-Khozondar, H. El-khozondar, Y. Nassar, E. Bayoumi, Hilmy Awad
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Abstract

Nanoparticle doped Quantum dots are novel materials which play an essential role on enhancing Solar cells efficiency. The focus of this work is on investigating the effect of adding CdS quantum dots doped with Ag nanoparticles layer into the solar cell structure. Then, comparison will be made between the performance of Ag doped CdS quantum dots doped and undoped CdSe quantum dots solar cells. The proposed solar cell structure comprises $\mathrm{F}\mathrm{T}\mathrm{O}/\mathrm{T}\mathrm{i}\mathrm{O}_{2}/\mathrm{A}\mathrm{g}$-doped $\mathrm{C}\mathrm{d}\mathrm{S}$ quantum dots/Iodide-Triiodide $(\mathrm{I}^{-}/\mathrm{I}^{-3})/$Platinum. The transmittance, reflectance and absorbance power are analytically studied using transverse matrix method and numerically calculated using Maple. The transmittance, reflectance and absorbance power is studied for different fractions of Ag nanoparticle and different CdSe quantum dots concentrations. Results show that the absorbance power increases as the fraction of Ag nanoparticles increases. In particular, there is a clear peak around 700 nm. However, absorbance hardly changes as quantum dots fraction changes. Thus, we recommend our study to be considered to improve the performance of solar cell.
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掺银CdSe量子点敏化太阳能电池效率的提高
纳米粒子掺杂量子点是提高太阳能电池效率的一种新型材料。本工作的重点是研究在太阳能电池结构中加入掺杂银纳米粒子层的CdS量子点的效果。然后,比较掺银CdS量子点与未掺杂CdSe量子点太阳能电池的性能。所提出的太阳能电池结构包括$\ matthrm {F}\ matthrm {T}\ matthrm {O}/\ matthrm {T}\ matthrm {i}\ matthrm {O}_{2}/\ matthrm {A}\ matthrm {g}$掺杂$\ matthrm {C}\ matthrm {d}\ matthrm {S}$量子点/碘化物-三碘化物$(\ matthrm {i} ^{-}/\ matthrm {i} ^{-3})/$铂。利用横向矩阵法对透光率、反射率和吸光度进行了解析研究,并用Maple软件进行了数值计算。研究了不同组分银纳米粒子和不同浓度镉硒量子点的透射率、反射率和吸光度。结果表明,随着银纳米颗粒含量的增加,吸光度增大。特别是在700 nm附近有一个明显的峰值。然而,吸光度几乎不随量子点分数的变化而变化。因此,我们建议考虑我们的研究,以提高太阳能电池的性能。
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