4.5 Article

First-principles calculations of different (001) surface terminations of three cubic perovskites CsCaBr3, CsGeBr3, and CsSnBr3

Journal

JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS
Volume 115, Issue -, Pages 289-299

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jpcs.2017.12.052

Keywords

Cubic perovskites; First-principles calculations; Surface termination

Funding

  1. Programme for the Foreign Experts by Chongqing University of Posts and Telecommunications [W2017011]
  2. Wenfeng High-end Talents Project by Chongqing University of Posts and Telecommunications [W2016-01]
  3. China-Poland Intergovernmental Science and Technology Cooperation Program [2015[170]/36-13]
  4. Ministry of Education and Research of Estonia [PUT430]
  5. European Regional Development Fund [TK141]
  6. Kyoto University
  7. China Scholarship Council (CSC) [201607845015]
  8. Scientific Research Foundation for Returned Overseas Chinese Scholars by Chinese Ministry of Human Resources and Social Security [[2014] 167]
  9. National Training Programs of Innovation and Entrepreneurship for College Students by Chinese Ministry of Education [201410617001]
  10. Scientific and Technological Research Program of Chongqing Municipal Education Commission [KJ1600415]

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Three cubic bromide perovskites CsMBr3 (M = Ca, Ge, Sn) with two different surface terminations (CsBr and MBr2) were studied in this work using the first principles method. A wide range of physical properties, including electronic band structures, atom-projected density of states for each layer, surface relaxation effects, and surface energy, were evaluated for each considered surface termination. Differences between the properties of the bulk and slab models were highlighted. It was shown that surfaces with the CsBr termination have a lower energy and a more pronounced surface rumpling than those with the MBr2 termination. As a main result of this study, it was demonstrated that the CsBr-terminated surfaces appear to be energetically more stable in each of these three considered perovskites.

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