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Water Adsorptionat the Tetrahedral Titania SurfaceLayer of SrTiO3(110)-(4 × 1)

机译:吸水率在四面体二氧化钛表面SrTiO3(110)-(4×1)的层

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摘要

The interaction of water with oxide surfaces is of great interest for both fundamental science and applications. We present a combined theoretical (density functional theory (DFT)) and experimental (scanning tunneling microscopy (STM) and photoemission spectroscopy (PES)) study of water interaction with the two-dimensional titania overlayer that terminates the SrTiO3(110)-(4 × 1) surface and consists of TiO4 tetrahedra. STM and core-level and valence band PES show that H2O neither adsorbs nor dissociates on the stoichiometric surface at room temperature, whereas it does dissociate at oxygen vacancies. This is in agreement with DFT calculations, which show that the energy barriers for water dissociation on the stoichiometric and reduced surfaces are 1.7 and 0.9 eV, respectively. We propose that water weakly adsorbs on two-dimensional, tetrahedrally coordinated overlayers.
机译:水与氧化物表面的相互作用对于基础科学和应用都非常重要。我们提出了水与终止SrTiO3(110)-(4)的二维二氧化钛层相互作用的理论研究(密度泛函理论(DFT))和实验研究(扫描隧道显微镜(STM)和光发射光谱学(PES))。 ×1)表面,由TiO4四面体组成。 STM和核心能级和价带PES表明,H2O在室温下既不吸附也不离解在化学计量表面上,而在氧空位时却离解。这与DFT计算吻合,DFT计算表明,化学计量表面和还原表面上水离解的能垒分别为1.7 eV和0.9 eV。我们建议水弱吸附在二维,四面体协调的叠加层上。

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