Reversible transition between thermodynamically stable phases with low density of oxygen vacancies on the SrTiO3(110) surface |
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Authors: | Li Fengmiao Wang Zhiming Meng Sheng Sun Yongbao Yang Jinlong Guo Qinlin Guo Jiandong |
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Affiliation: | Beijing National Laboratory for Condensed-Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China. |
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Abstract: | The surface reconstruction of SrTiO3(110) is studied with scanning tunneling microscopy and density functional theory (DFT) calculations. The reversible phase transition between (4×1) and (5×1) is controlled by adjusting the surface metal concentration [Sr] or [Ti]. Resolving the atomic structures of the surface, DFT calculations verify that the phase stability changes upon the chemical potential of Sr or Ti. In particular, the density of oxygen vacancies is low on the thermodynamically stabilized SrTiO3(110) surface. |
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