Template engineering of metal-to-insulator transitions in epitaxial bilayer nickelate thin films

被引:0
|
作者
Lee, Jongmin [1 ]
Kim, Gi-Yeop [2 ,12 ]
Jeong, Seyeop [3 ]
Yang, Mihyun [4 ]
Kim, Jong-Woo [5 ]
Cho, Byeong-Gwan [4 ]
Choi, Yongseong [5 ]
Kim, Sangmo [6 ]
Choi, Jin San [7 ]
Lee, Tae Kwon [8 ]
Kim, Jiwoong [9 ]
Lee, Dong Ryeol [10 ]
Chang, Seo Hyoung [11 ]
Park, Sungkyun [9 ]
Jung, Jong Hoon [8 ]
Bark, Chung Wung [6 ]
Koo, Tae-Young [4 ]
Ryan, Philip J. [5 ]
Ihm, Kyuwook [4 ]
Kim, Sanghoon [3 ]
Choi, Si-Young [2 ,12 ]
Kim, Tae Heon [7 ]
Lee, Sanghan [1 ]
机构
[1] School of Materials Science and Engineering, Gwangju Institute of Science and Technology, Gwangju,61005, Korea, Republic of
[2] Department of Materials Science and Engineering, Pohang University of Science and Technology, Pohang,37673, Korea, Republic of
[3] Department of Physics, University of Ulsan, Ulsan,44610, Korea, Republic of
[4] Pohang Accelerator Laboratory, Pohang,37673, Korea, Republic of
[5] Advanced Photon Source, Argonne National Laboratory, Argonne,IL,60439, United States
[6] Department of Electrical Engineering, Gachon University, Seongnam,13120, Korea, Republic of
[7] Department of Physics, University of Ulsan and Energy Harvest-Storage Research Center (EHSRC), Ulsan,44610, Korea, Republic of
[8] Department of Physics, Inha University, Incheon,22212, Korea, Republic of
[9] Department of Physics, Pusan National University, Busan,46241, Korea, Republic of
[10] Department of Physics, Soongsil University, Seoul,06978, Korea, Republic of
[11] Department of Physics, Chung-Ang University, Seoul,06974, Korea, Republic of
[12] Department of Physics, University of Ulsan and Energy Harvest-Storage Research Center (EHSRC), Ulsan,44610, Korea, Republic of
来源
ACS Applied Materials and Interfaces | 2021年 / 13卷 / 45期
基金
新加坡国家研究基金会;
关键词
Epitaxial growth - Lanthanum compounds - Nickel compounds - Perovskite solar cells - Neodymium compounds - Oxide films - Oxygen - Metals - Heterojunctions - Metal insulator transition - Perovskite;
D O I
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中图分类号
学科分类号
摘要
Understanding metal-to-insulator phase transitions in solids has been a keystone not only for discovering novel physical phenomena in condensed matter physics but also for achieving scientific breakthroughs in materials science. In this work, we demonstrate that the transport properties (i.e., resistivity and transition temperature) in the metal-to-insulator transitions of perovskite nickelates are tunable via the epitaxial heterojunctions of LaNiO3 and NdNiO3 thin films. A mismatch in the oxygen coordination environment and interfacial octahedral coupling at the oxide heterointerface allows us to realize an exotic phase that is unattainable in the parent compound. With oxygen vacancy formation for strain accommodation, the topmost LaNiO3 layer in LaNiO3/NdNiO3 bilayer thin films is structurally engineered and it electrically undergoes a metal-to-insulator transition that does not appear in metallic LaNiO3. Modification of the NdNiO3 template layer thickness provides an additional knob for tailoring the tilting angles of corner-connected NiO6 octahedra and the linked transport characteristics further. Our approaches can be harnessed to tune physical properties in complex oxides and to realize exotic physical phenomena through oxide thin-film heterostructuring. © 2021 American Chemical Society.
引用
收藏
页码:54466 / 54475
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