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Metallic interface induced by electronic reconstruction in crystalline-amorphous bilayer oxide films
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作者 Xujie Lu Aiping Chen +12 位作者 Yaomin Dai Bin Wei Hongwu Xu jianguo Wen Nan Li Yongkang Luog Xiang Gao Erik Enriquez Zhongchang Wang Paul Dowden Wenge Yang Yusheng Zhao quanxi jia 《Science Bulletin》 SCIE EI CAS CSCD 2019年第21期1567-1572,共6页
Extraordinary electronic properties can emerge at the interfaces between metal oxides[1-10].Interfacial behaviors have enabled a wide range of applications from electronic communication,energy conversion and storage,t... Extraordinary electronic properties can emerge at the interfaces between metal oxides[1-10].Interfacial behaviors have enabled a wide range of applications from electronic communication,energy conversion and storage,to data processing and memory.In recent years,unprecedented progress has been made in exploring and exploiting the emergent and/or enhanced properties of these interfaces,and it is becoming clear that interface engineering provides a new opportunity for advanced devices in the near future.The capability of using interfaces to manipulate material properties offers an effective means to achieve intriguing phenomena. 展开更多
关键词 INTERFACE ELECTRONIC AMORPHOUS
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Correlation of structural and electrical properties of PrBaCo2O5td thin films at high temperature
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作者 Brennan Mace Zach Harrell +4 位作者 Xing Xu Chonglin Chen Erik Enriquez Aiping Chen quanxi jia 《Journal of Materiomics》 SCIE EI 2018年第1期51-55,共5页
Epitaxial PrBaCo_(2)O_(5+δ)(PBCO,0≤δ≤1)thin films were deposited by pulsed laser deposition.The structural and electrical properties of the films were characterized at high temperatures in reduced environments.X-r... Epitaxial PrBaCo_(2)O_(5+δ)(PBCO,0≤δ≤1)thin films were deposited by pulsed laser deposition.The structural and electrical properties of the films were characterized at high temperatures in reduced environments.X-ray diffraction scans at high temperature in reduced environment show potential structural transitions of PBCO as evidenced by both a large(Dl=0.335 nm)expansion of the out-plane(caxis)lattice,due to thermal and chemical expansion,and a step in the expansion of the c-axis lattice parameter.These transitions indicate the presence of oxygen vacancy ordering as the oxygen content in the films is reduced.Resistivity measurements under the same environments also show evidence of sharp transitions related with the structural transformations.This study helps the understanding of the structure-property relationship of PBCO at high temperature and provides important technological information to utilize these materials for solid oxide fuel cell at intermediate temperatures. 展开更多
关键词 High temperature Physical properties Complex oxide Oxygen vacancy Lattice structures
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