Literature DB >> 22360213

Local structural models of complex oxygen- and hydroxyl-rich GaP/InP(001) surfaces.

Brandon C Wood1, Tadashi Ogitsu, Eric Schwegler.   

Abstract

We perform density-functional theory calculations on model surfaces to investigate the interplay between the morphology, electronic structure, and chemistry of oxygen- and hydroxyl-rich surfaces of InP(001) and GaP(001). Four dominant local oxygen topologies are identified based on the coordination environment: M-O-M and M-O-P bridges for the oxygen-decorated surface; and M-[OH]-M bridges and atop M-OH structures for the hydroxyl-decorated surface (M = In, Ga). Unique signatures in the electronic structure are linked to each of the bond topologies, defining a map to structural models that can be used to aid the interpretation of experimental probes of native oxide morphology. The M-O-M bridge can create a trap for hole carriers upon imposition of strain or chemical modification of the bonding environment of the M atoms, which may contribute to the observed photocorrosion of GaP/InP-based electrodes in photoelectrochemical cells. Our results suggest that a simplified model incorporating the dominant local bond topologies within an oxygen adlayer should reproduce the essential chemistry of complex oxygen-rich InP(001) or GaP(001) surfaces, representing a significant advantage from a modeling standpoint.
© 2012 American Institute of Physics

Entities:  

Year:  2012        PMID: 22360213     DOI: 10.1063/1.3682768

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  1 in total

1.  InP and AlInP(001)(2 × 4) Surface Oxidation from Density Functional Theory.

Authors:  Isaac Azahel Ruiz Alvarado; Marsel Karmo; Erich Runge; Wolf Gero Schmidt
Journal:  ACS Omega       Date:  2021-02-25
  1 in total

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