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Hidden metal-insulator transition in manganites synthesized via a controllable oxidation 被引量:1
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作者 Chuangye Song Iftikhar Ahmed Malik +10 位作者 Menglei Li Qinghua Zhang Lichen Wang Jing Wang Rongyan Chen renkui zheng Shuai Dong Lin Gu Wenhui Duan Ce-Wen Nan Jinxing Zhang 《Science China Materials》 SCIE EI CSCD 2019年第4期577-585,共9页
Oxygen usually plays crucial roles in tuning the phase structures and functionalities of complex oxides such as high temperature superconductivity, colossal magnetoresistance, catalysis, etc. Effective and considerabl... Oxygen usually plays crucial roles in tuning the phase structures and functionalities of complex oxides such as high temperature superconductivity, colossal magnetoresistance, catalysis, etc. Effective and considerable control of the oxygen content in those functional oxides could be highly desired. Here, using perovskite manganite(La0.5Sr0.5)MnO3 as a paradigm, we develop a new pathway to synthesize the epitaxial thin films assisted by an in-situ chemical process, where the oxygen content can be precisely controlled by varying oxidative activity tuned by the atmospheric temperature(Tatm)during the growth. A hidden metal-insulator transition(MIT)emerges due to the phase competition, which is never shown in the phase diagram of this classic manganite. The oxygenmediated interaction between Mn ions together with the change of carrier density might be responsible for this emerging phase, which is compatible with the results of firstprinciple calculations. This work demonstrates that, apart from traditional cation doping, a precise modulation of anion(O2-, S2-, etc.) may provide a new strategy to control phase structures and functionalities of epitaxial compound thin films. 展开更多
关键词 oxidative-activity OXYGEN-CONTENT MANGANITES hidden METAL-INSULATOR transition
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