Enhanced Absorption of the Quantum Dots Solar Cells Based on Co-Sensitized Cds/Cdse Quantum Dots
DOI:
https://doi.org/10.53555/ans.v2i3.108Keywords:
passivation,, solar cells, quantum dots.Abstract
In this work, the CdS and CdSe quantum dots were prepared on TiO2 mesoporous film through a successive ion layer absorption and reaction (SILAR) method and a chemical bath deposition (CBD) method, respectively. As a result, simply increasing film thickness did make significant contribution to improving solar cell efficiency. The results show the enhances the power conversion efficiency of 1.21 % in the quantum dots solar cells.
Downloads
References
Nozik, A, J (2005), Exciton Multiplication and Relaxation Dynamics in Quantum Dots: Applications to Ultrahigh-Efficiency Solar Photon Conversion. Inorg. Chem.44, 6893-6899.
Wu. Jiang,Wang. Zhiming M. (2014), Quantum Dot Solar Cells. Springer-Verlag New York, Volume 15.
Guyot-Sionnest, P (2008), Colloidal Quantum Dots. C. R. Physique. 9, 77-787.
Vogel R, Pohl K, Weller H. (1990), Sensitization of highly porous polycrystalline TiO2electrodes by quantum sized CdS, Chem Phys Lett,174,241-6.
Lee Y. L, Lo Y. S.(2009), Highly efficient quantum-dot-sensitized solar cell based on co-sensitization of CdS/CdSe, Advanced Functional Materials, 19, 604–609.
Zhang Q, Zhang Y, Huang S, Huang X, Luo Y, Meng Q, Li D. (2010), Application of carbon counterelectrode on CdS quantum dot-sensitized solar cells (QDSSCs), Electrochemistry Communications,12, 327–30.
Chen J, Zhao DW, Song JL, Sun XW, Deng WQ, Liu XW, Lei W. (2009), Directly assembled CdSe quantum dots on TiO2in aqueous solution by adjusting pH value for quantumdot sensitized solar cells, Electrochemistry Communications, 11, 2265–7.
Yu X-Y, Lei B-X, Kuang D-B, Su C-Y. (2012), High performance and reduced charge recombination of CdSe/CdS quantum dot-sensitized solar cells, J Mater Chem, 22, 12058–63.



