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Realization of BaZrS<sub>3</sub> chalcogenide perovskite thin films for optoelectronics

ORAL

Abstract

BaZrS3, a prototypical chalcogenide perovskite, has not yet been deeply explored despite being first synthesized in the mid-1950s. In recent years, several publications on powder samples reveal that BaZrS3 has a direct band gap of 1.7 to 1.8 eV, a high stability against moisture and pressure, and a very strong interaction with light. However, many of the fundamental properties still remain unknown due to the lack of film samples. Here we report the fabrication of BaZrS3 thin films, by sulfurization of corresponding BaZrO3 films deposited by pulsed laser deposition. Transport measurements indicate the films are n-type semiconductors with carrier densities in the range of 1019 to 1020 cm-3. The hall mobility ranges from 2.1 to 13.7 cm2/Vs depending on the sulfurization temperature. UV-Vis result shows an absorption coefficient of >105 cm-1 at a photon energy of >1.97eV and temperature dependent conductivity measurements reveal shallow donor level with an activation energy of several milli-electron volts. Our results assure that BaZrS3 is a promising candidate material for optoelectronics.

Presenters

  • Xiucheng Wei

    State University of New York at Buffalo

Authors

  • Xiucheng Wei

    State University of New York at Buffalo

  • Haolei Hui

    State University of New York at Buffalo

  • Mengjiao Han

    Southern University of Science & Technology, Shenzhen

  • Samanthe Perera

    University of Science and Arts of Oklahoma

  • Junhao Lin

    Department of Physics, Southern University of Science and Technology, Southern University of Science & Technology, Shenzhen

  • Yi-Yang Sun

    Shanghai Institute of Ceramics, Chinese Academic of Sciences

  • Shengbai Zhang

    Rensselaer Polytechnic Institute

  • Hao Zeng

    State Univ of NY - Buffalo, Physics, State Univ of NY - Buffalo, Physics, University at Buffalo, Physics, State Univ of NY - Buffalo, Buffalo, New York, State University of New York at Buffalo