Non-Band-Gap Photoexcitation of Hydroxylated TiO2

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Abstract

The photochemistry of TiO2 has been studied intensively since it was discovered that TiO2 can act as a photocatalyst. Nevertheless, it has proven difficult to establish the detailed charge-transfer processes involved, partly because the excited states involved are difficult to study. Here we present evidence of the existence of hydroxyl-induced excited states in the conduction band region. Using two-photon photoemission, we show that stepwise photoexcitation from filled band gap states lying 0.8 eV below the Fermi level of rutile TiO2(110) excites hydroxyl-induced states 2.73 eV above the Fermi level that has an onset energy of ∼3.1 eV. The onset is shifted to lower energy by the coadsorption of molecular water, which suggests a means of tuning the energy of the excited state. (Chemical Equation Presented).

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Zhang, Y., Payne, D. T., Pang, C. L., Fielding, H. H., & Thornton, G. (2015). Non-Band-Gap Photoexcitation of Hydroxylated TiO2. Journal of Physical Chemistry Letters, 6(17), 3391–3395. https://doi.org/10.1021/acs.jpclett.5b01508

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