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Atomic-scale structures and dynamic behaviors of CeO 2 (111) surfaces were imaged by noncontact atomic force microscopy (NC-AFM) and scanning tunneling microscopy (STM). Hexagonally arranged oxygen atoms, oxygen point vacancies, multiple oxygen vacancies, and hydrogen adatoms at the surfaces were visualized by atom-resolved NC-AFM observations. Multiple defects were stabilized by displacement...
Atomic-scale structures of CeO 2 (111) were examined by noncontact atomic force microscopy (NC-AFM). Hexagonally arranged surface oxygen atoms at an ideally oxygen-terminated surface, oxygen point vacancies, and multiple oxygen vacancies such as triangular defects and line defects formed depending on different oxidation states of CeO 2-x were visualized by NC-AFM. These observations...
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