4.8 Article

CdS/CdSe Co-Sensitized TiO2 Photoelectrode for Efficient Hydrogen Generation in a Photoelectrochemical Cell

Journal

CHEMISTRY OF MATERIALS
Volume 22, Issue 3, Pages 922-927

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/cm901762h

Keywords

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Funding

  1. National Science Council of Taiwan [NSC-96-ET-7-006-001-ET, NSC-95-2218-E-006-049]

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An efficient photoelectrode is prepared by sequentially assembled US and CdSe quantum dots (QDs) onto a nanocrystalline TiO2 film. The CdS/CdSe co-sensitized photoelectrode was found to have a complementary effect in the light absorption. Furthermore, the cascade structure, TiO2/CdS/CdSe, exhibits a significant enhancement in the current-voltage response, both in dark conditions and under light illumination. On the contrary, the performance of the reverse structure, TiO2/CdSe/CdS, is much less than the electrode using a single sensitizer. The open circuit potentials measured in the dark for these electrodes indicates that a Fermi level alignment Occurs between US and CdSe after their contact, causing downward and upward shifts of the band edges, respectively, for US and CdSe. A stepwise band edge structure is, therefore, constructed in the TiO2/CdS/CdSe electrode, which is responsible for the performance enhancement of this photoelectrode. The saturated photocurrent achieved by the TiO2/CdS/CdSe electrode under the illumination of UV cutoff AM 1.5 (100 mW/cm(2)) is 14.9 mA/cm(2), which is three times the value obtained by the TiO2/CdS and TiO2/CdSe electrode. When a ZnS layer is further deposited for passivating the QDs, the corresponding hydrogen evolution rate measured for the TiO2/CdS/CdSe/ZnS electrode is 220 mu mol/(cm(2) h) (5.4 mL/(cm(2) h)). This performance is presently the highest reported for the QD-sensitized photoelectrochemical cells.

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