4.4 Article

Photovoltaic Effect of Metal-Doped TiO2 Nanoparticles for Dye-Sensitized Solar Cells

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ELECTROCHEMICAL SOC INC
DOI: 10.1149/2.0031605jss

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  1. National Research Foundation of Korea (NRF) grant - Korea government (MISP) [2015M2B2A9030532]
  2. MOTIE/KIAT [R0004144]

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Crystalline anatase TiO2 nanoparticles (NPs) synthesized by a sol-gel method were used as photoelectrodes in dye-sensitized solar cells (DSSCs). In order to improve the electrochemical properties such as the open circuit voltage (V-oc) and the rate of electron transfer, various amounts of Al and Zn were doped into TiO2 NPs. Al doping of TiO2 NPs successfully improved the photovoltaic performance of the DSSCs as seen in the V-oc of 0.79 V for these electrodes. The Zn-doped TiO2 NPs exhibited faster electron transport than pure TiO2 or Al-doped TiO2 NPs. The photovoltaic efficiency (eta) of pure TiO2 NPs, 4 mmol Al-doped TiO2 NPs, and 3 mmol Zn-doped TiO2 NPs-based DSSCs are 3.90, 5.86, and 5.58%, respectively. In order to improve the V-oc, J(sc), and electron transfer rates simultaneously, the 4 mmol Al-doped TiO2 NP and 3 mmol Zn-doped TiO2 NP powders were mixed together and used for the preparation of photoelectrodes. The eta of the mixed Al/Zn-doped TiO2 NPs-based DSSC was 7.12%, while the V-oc, J(sc), and electron transport times were 0.75 V, 14.38 mA cm(-2) and 3.112 x 10(-4) s, respectively. (C) 2016 The Electrochemical Society. All rights reserved.

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