Water adsorption, dissociation and oxidation on SrTiO3 and ferroelectric surfaces revealed by ambient pressure X-ray photoelectron spectroscopy

被引:53
|
作者
Domingo, Neus [1 ,2 ]
Pach, Elzbieta [1 ,2 ]
Cordero-Edwards, Kumara [1 ,2 ]
Perez-Dieste, Virginia [3 ]
Escudero, Carlos [3 ]
Verdaguer, Albert [4 ]
机构
[1] CSIC, Catalan Inst Nanosci & Nanotechnol ICN2, Campus UAB, Barcelona 08193, Spain
[2] Barcelona Inst Sci & Technol, Campus UAB, Barcelona 08193, Spain
[3] ALBA Synchrotron Light Source, Carrer Llum 2-26, Barcelona 08290, Spain
[4] CSIC, Inst Ciencia Mat Barcelona ICMAB, Campus UAB, E-08193 Bellaterra, Spain
关键词
IN-SITU; THIN-FILMS; XPS; TIO2(110); H2O; PEROVSKITES; REACTIVITY; CHEMISTRY; HYDROXYL; GROWTH;
D O I
10.1039/c8cp07632d
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
Water dissociation on oxides is of great interest because its fundamental aspects are still not well understood and it has implications in many processes, from ferroelectric polarization screening phenomena to surface catalysis and surface chemistry on oxides. In situ water dissociation and redox processes on metal oxide perovskites which easily expose TiO2-terminated surfaces, such as SrTiO3, BaTiO3 or Pb(Zr,Ti)O-3, are studied by ambient pressure XPS, as a function of water vapour pressure. From the analysis of the O1s spectrum, we determine the presence of different types of oxygen based species, from hydroxyl groups, either bound to Ti4+ and metal sites or lattice oxygen, to different peroxide compounds, and propose a model for the adsorbate layer composition, valid for environmental conditions. From the XPS analysis, we describe the existing surface redox reactions for metal oxide perovskites, occurring at different water vapour pressures. Among them, peroxide species resulting from surface oxidative reactions are correlated with the presence of Ti4+ ions, which are observed to specifically promote surface oxidation and water dissociation as compared to other metals. Finally, surface peroxidation is enhanced by X-ray beam irradiation, leading to a higher coverage of peroxide species after beam overexposure and by ferroelectric polarization, demonstrating the enhancement of the reactivity of the surfaces of ferroelectric materials due to the effect of internal electric fields.
引用
收藏
页码:4920 / 4930
页数:11
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