Competing stabilization mechanism for the polar ZnO(0001)-Zn surface

Georg Kresse, Olga Dulub, and Ulrike Diebold
Phys. Rev. B 68, 245409 – Published 11 December 2003
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Abstract

Density-functional calculations for the (0001)-Zn surface of wurtzite ZnO are reported. Different stabilization mechanisms, such as metallization of the surface layer, adsorption of OH groups or O adatoms, the formation of Zn vacancies, and large scale triangular reconstructions are considered. The calculations indicate that isolated Zn vacancies or O adatoms are unfavorable compared to triangular reconstructions. In the absence of hydrogen, these triangular features are stable under any realistic temperature and pressure. When hydrogen is present, the reconstruction is lifted, and hydroxyl groups stabilize the ideal otherwise unreconstructed surface. The transition between the unreconstructed hydroxyl covered surface and the triangular shaped features occurs abruptly; OH groups lift the reconstruction, but their adsorption is energetically unfavorable on the triangularly reconstructed surface.

  • Received 27 June 2003

DOI:https://doi.org/10.1103/PhysRevB.68.245409

©2003 American Physical Society

Authors & Affiliations

Georg Kresse1,*, Olga Dulub2, and Ulrike Diebold2

  • 1Institut für Materialphysik and Center for Computational Materials Science, Universität Wien, A-1090 Wien, Austria
  • 2Department of Physics, Tulane University, New Orleans, Louisiana 70118, USA

  • *Electronic address: georg.kresse@univie.ac.at

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Issue

Vol. 68, Iss. 24 — 15 December 2003

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