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The performance of coupled (CdS:CdSe) quantum dot-sensitized TiO2 nanofibrous solar cells
Authors:P. Sudhagar  June Hyuk Jung  Suil Park  Yong-Gun Lee  R. Sathyamoorthy  Yong Soo Kang  Heejoon Ahn
Affiliation:1. Energy Materials Laboratory, Department of Chemical Engineering, Hanyang University, Seoul 133-791, South Korea;2. School of Chemical and Biological Engineering, Seoul National University, Seoul 151-744, South Korea;3. Department of Physics, Kongunadu Arts and Science College, Coimbatore 641029, India;4. Department of Molecular System Engineering, Hanyang University, Seoul 133-791, South Korea
Abstract:Highly porous networks and reduced grain boundaries with one-dimensional (1-D) nanofibrous morphology offer enhanced charge transport in solar cells applications. Quantum dot (QDs) decorated TiO2 nanofibrous electrodes, unlike organic dye sensitizers, can yield multiple carrier generations due to the quantum confinement effect. This paper describes the first attempt to combine these two novel approaches, in which CdS (~18 nm) and CdSe (~8 nm) QDs are sensitized onto electrospun TiO2 nanofibrous (diameter ~80–100 nm) electrodes. The photovoltaic performances of single (CdS and CdSe) and coupled (CdS/CdSe) QDs-sensitized TiO2 fibrous electrodes are demonstrated in sandwich-type solar cells using polysulfide electrolyte. The observed difficulties in charge injection and lesser spectral coverage of single QDs-sensitizers are solved by coupling (CdS:CdSe) two QDs-sensitizers, resulting in a enhanced open-circuit voltage (0.64 V) with 2.69% efficiency. These results suggest the versatility of fibrous electrodes in QDs-sensitized solar cell applications.
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