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- W4382583237 abstract "Cobalt doped CdSe quantum dots have been successfully synthesized on TiO2 nanorod arrays using the electrochemical deposition method, and the effect of Co2+ content on the properties of CdSe/TiO2 electrodes has been studied. It has been found that the introduction of Co2+ results in a decrease of deposited rate of CdSe and smaller crystallite size as the SEM figures shown. X-ray diffraction results reveal both undoped and Co-doped CdSe exhibit zinc blende structure without any impurity phase. In comparison with the pure CdSe/TiO2 photoelectrode, the Co-doped CdSe/TiO2 electrodes show the wider absorption range in visible region and the better band alignment for electron transport, which gives rise to the higher photocurrent density. Moreover, by adjusting the deposited electrical quantity and the amount of Co, the 2% in atomic ratio Co-doped CdSe/TiO2 electrode with deposited electrical quantities at 0.9 C yields a largest saturated current density of 13.4 mA/cm2 under the irradiation of AM1.5G simulated sunlight at 100 mW/cm2. And the quantum dot sensitized solar cells using the TiO2/Co-doped CdSe nanocable array as photoanode shows a power conversion efficiency of 1.225% which is higher than that of the pure CdSe photoanode (0.620%)." @default.
- W4382583237 created "2023-06-30" @default.
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- W4382583237 date "2013-05-01" @default.
- W4382583237 modified "2023-10-16" @default.
- W4382583237 title "Role of Co2+ Incorporation in Significant Photocurrent Enhancement of Electrochemical Deposited CdSe Quantum Dots Sensitized TiO2 Nanorod Arrays Solar Cells" @default.
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- W4382583237 doi "https://doi.org/10.1016/s1452-3981(23)14838-3" @default.
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