Literature DB >> 29420289

Polarity compensation mechanisms on the perovskite surface KTaO3(001).

Martin Setvin1, Michele Reticcioli2, Flora Poelzleitner3, Jan Hulva3, Michael Schmid3, Lynn A Boatner4, Cesare Franchini2, Ulrike Diebold3.   

Abstract

The stacking of alternating charged planes in ionic crystals creates a diverging electrostatic energy-a "polar catastrophe"-that must be compensated at the surface. We used scanning probe microscopies and density functional theory to study compensation mechanisms at the perovskite potassium tantalate (KTaO3) (001) surface as increasing degrees of freedom were enabled. The as-cleaved surface in vacuum is frozen in place but immediately responds with an insulator-to-metal transition and possibly ferroelectric lattice distortions. Annealing in vacuum allows the formation of isolated oxygen vacancies, followed by a complete rearrangement of the top layers into an ordered pattern of KO and TaO2 stripes. The optimal solution is found after exposure to water vapor through the formation of a hydroxylated overlayer with ideal geometry and charge.
Copyright © 2018 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.

Entities:  

Year:  2018        PMID: 29420289     DOI: 10.1126/science.aar2287

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  5 in total

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4.  Surface chemistry on a polarizable surface: Coupling of CO with KTaO3(001).

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Journal:  Sci Adv       Date:  2022-08-19       Impact factor: 14.957

5.  Competing electronic states emerging on polar surfaces.

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  5 in total

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