Interface Engineering and Emergent Phenomena in Oxide Heterostructures

  • Zhen Huang
    NUSNNI‐NanoCore National University of Singapore 5A Engineering Drive 1 Singapore 117411 Singapore
  • Ariando
    NUSNNI‐NanoCore National University of Singapore 5A Engineering Drive 1 Singapore 117411 Singapore
  • Xiao Renshaw Wang
    NUSNNI‐NanoCore National University of Singapore 5A Engineering Drive 1 Singapore 117411 Singapore
  • Andrivo Rusydi
    NUSNNI‐NanoCore National University of Singapore 5A Engineering Drive 1 Singapore 117411 Singapore
  • Jingsheng Chen
    NUSNNI‐NanoCore National University of Singapore 5A Engineering Drive 1 Singapore 117411 Singapore
  • Hyunsoo Yang
    NUSNNI‐NanoCore National University of Singapore 5A Engineering Drive 1 Singapore 117411 Singapore
  • Thirumalai Venkatesan
    NUSNNI‐NanoCore National University of Singapore 5A Engineering Drive 1 Singapore 117411 Singapore

書誌事項

公開日
2018-08-21
権利情報
  • http://onlinelibrary.wiley.com/termsAndConditions#vor
DOI
  • 10.1002/adma.201802439
公開者
Wiley

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説明

<jats:title>Abstract</jats:title><jats:p>Complex oxide interfaces have mesmerized the scientific community in the last decade due to the possibility of creating tunable novel multifunctionalities, which are possible owing to the strong interaction among charge, spin, orbital, and structural degrees of freedom. Artificial interfacial modifications, which include defects, formal polarization, structural symmetry breaking, and interlayer interaction, have led to novel properties in various complex oxide heterostructures. These emergent phenomena not only serve as a platform for investigating strong electronic correlations in low‐dimensional systems but also provide potentials for exploring next‐generation electronic devices with high functionality. Herein, some recently developed strategies in engineering functional oxide interfaces and their emergent properties are reviewed.</jats:p>

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