TY - JOUR
T1 - Stabilization of the (1 1 1) surface of NiO and CoO by segregation of point defects
AU - Xing, Wandong
AU - Sha, Haozhi
AU - Meng, Fanyan
AU - Yu, Rong
N1 - Publisher Copyright:
© 2022
PY - 2022/4/30
Y1 - 2022/4/30
N2 - Vacancies are ubiquitous point defects in transition metal oxides. Surprisingly, the effect of vacancies on the structural stability of oxide surfaces has been neglected in the last decades. On the other hand, experimentally observed surface structures of oxides are frequently in contrast to theoretical predictions. A typical example is the widely observed (1 1 1) surface of the rock-salt-type NiO and CoO, which is predicted to be polar and unstable according to electrostatic arguments. Previous theoretical models proposed to compensate the surface polarity assume a perfect bulk, despite the high density of cation vacancies in these materials. Through first-principles calculations, we show in this work that the cation vacancies have a strong tendency to segregate to the surface, leading to the formation of surfaces with high-proportion of cation vacancies even at low oxygen potentials. Energetically, the segregated surfaces are more stable than the well-known octopolar reconstruction. The role of segregation of point defects in surface behaviors of transition metal oxides may be of significance for understanding their catalysis and electronic properties.
AB - Vacancies are ubiquitous point defects in transition metal oxides. Surprisingly, the effect of vacancies on the structural stability of oxide surfaces has been neglected in the last decades. On the other hand, experimentally observed surface structures of oxides are frequently in contrast to theoretical predictions. A typical example is the widely observed (1 1 1) surface of the rock-salt-type NiO and CoO, which is predicted to be polar and unstable according to electrostatic arguments. Previous theoretical models proposed to compensate the surface polarity assume a perfect bulk, despite the high density of cation vacancies in these materials. Through first-principles calculations, we show in this work that the cation vacancies have a strong tendency to segregate to the surface, leading to the formation of surfaces with high-proportion of cation vacancies even at low oxygen potentials. Energetically, the segregated surfaces are more stable than the well-known octopolar reconstruction. The role of segregation of point defects in surface behaviors of transition metal oxides may be of significance for understanding their catalysis and electronic properties.
KW - Density functional theory
KW - Segregation of point defects
KW - Surface stability
KW - Transition metal oxides
UR - https://www.scopus.com/pages/publications/85122615913
U2 - 10.1016/j.apsusc.2022.152473
DO - 10.1016/j.apsusc.2022.152473
M3 - 文章
AN - SCOPUS:85122615913
SN - 0169-4332
VL - 582
JO - Applied Surface Science
JF - Applied Surface Science
M1 - 152473
ER -