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Combined investigation of water sorption on TiO2 rutile (110) single crystal face:: XPS vs. periodic DFT
被引:158
作者:
Perron, H.
Vandenborre, J.
Domain, C.
Drot, R.
Roques, J.
Simoni, E.
Ehrhardt, J. -J
Catalette, H.
机构:
[1] Univ Paris 11, IPN Orsay, UMR 8608, F-91406 Orsay, France
[2] EDF R&D, Dept Mat & Mecan Composants, F-77818 Moret Sur Loing, France
[3] Univ Nancy 1, CNRS, UMR 7564, LCPME, F-54600 Villers Les Nancy, France
关键词:
water;
sorption;
rutile TiO2 (110);
XPS;
DFT;
D O I:
10.1016/j.susc.2006.10.015
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
XPS and periodic DFT calculations have been used to investigate water sorption on the TiO2 rutile (110) face. Two sets of XPS spectra were collected on the TiO2 (110) single crystal clean and previously exposed to water: the first set with photoelectrons collected in a direction parallel to the normal to the surface; and the second set with the sample tilted by 70 degrees, respectively. This tilting procedure promotes the signals from surface species and reveals that the first hydration layer is strongly coordinated to the surface and also that, despite the fact that the spectra were recorded under ultra-high vacuum, water molecules subsist in upper hydration layers. In addition, periodic DFT calculations were performed to investigate the water adsorption process to determine if molecular and/or dissociative adsorption takes place. The first step of the theoretical part was the optimisation of a dry surface model and then the investigation of water adsorption. The calculated molecular water adsorption energies are consistent with previously published experimental data and it appears that even though it is slightly less stable, the dissociative water sorption can also take place. This assumption was considered, in a second step, on a larger surface model where molecular and dissociated water molecules were adsorbed together with different ratio. It was found that, due to hydrogen bonding stabilisation, molecular and dissociated water molecules can coexist on the surface if the ratio of dissociated water molecules is less than approximate to 33%. These results are consistent with previous experimental works giving a 10-25% range. (c) 2006 Elsevier B.V. All rights reserved.
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页码:518 / 527
页数:10
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