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Engineering Metal Oxidation Towards Epitaxial Growth of Complex Iridates

ORAL

Abstract

Oxides of the platinum group metals like Ir and Ru have received increasing attention due to the delicate interplay of electron correlations, crystal field and spin-orbit coupling energies. However, their low vapor pressures and oxidation potentials make the synthesis of their oxide thin films challenging in an ultra-high vacuum system such as Molecular Beam Epitaxy (MBE). We address these challenges using a novel solid-source metal-organic MBE approach [1,2] and epitaxial strain. We demonstrate atomically precise synthesis of binary and complex iridates. Combining detailed growth, x-ray diffraction, transmission and scanning electron microscopy, spectroscopy techniques, and DFT calculations, we demonstrate a vital role of epitaxial strain on Ir oxidation. We will present a detailed growth study, structural characterization and electrical transport in high quality, epitaxial IrO2 and Sr2IrO4 films.

References:

[1] W. Nunn, S. Nair, H. Yun, A. K. Manjeshwar, A. Rajapitamahuni, D. Lee, K. A. Mkhoyan, and B. Jalan, "Solid source metal-organic molecular beam epitaxy of epitaxial RuO2" APL Mater. 9, 091112 (2021)

[2] W. Nunn, A. K. Manjeshwar, J. Yue, A. Rajapitamahuni, T. K. Truttmann and B. Jalan, "Novel synthesis approach for “stubborn” metals and metal oxides", Proc. Natl. Acad. Sciences 118, e2105713118 (2021)

Presenters

  • Sreejith Thampan Nair

    University of Minnesota, University of Minnesota, Twin Cities

Authors

  • Sreejith Thampan Nair

    University of Minnesota, University of Minnesota, Twin Cities

  • Zhifei Yang

    University of Minnesota- Twin Cities, University of Minnesota

  • DOOYONG LEE

    University of Minnesota

  • Silu Guo

    University of Minnesota, Twin Cities

  • Jerzy Sadowski

    Brookhaven National Laboratory, Brookhaven National Lab

  • Spencer Johnson

    Auburn University

  • Abdul Saboor

    University of Delaware

  • Hua Zhou

    Advanced Photon Source, Argonne National Laboratory, Argonne National Laboratory

  • Ryan B Comes

    Auburn University

  • Wencan Jin

    Auburn University

  • K. Andre Mkhoyan

    University of Minnesota, University of Minnesota, Twin Cities

  • Anderson Janotti

    University of Delaware

  • Bharat Jalan

    University of Minnesota