TY - JOUR
T1 - LSDA + U calculations of the electronic and optical properties of rutile TiO2(110) vs (011)-2 × 1 surfaces
AU - Yuan, Feng
AU - Lu, Shixiang
AU - Xu, Wenguo
AU - Zhang, Haifeng
AU - Ning, Tao
PY - 2014/7
Y1 - 2014/7
N2 - We present a study concerning the effect of the on-site Coulomb interaction term U on the electronic and optical properties of the rutile TiO2(1 1 0) surface as compared with those of the rutile TiO2(0 1 1)-2 × 1 surface. The calculations were performed using the so-called LSDA + U approach, in which U = 5 eV was added for the treatment of the Ti-3d electrons. For the rutile TiO2(1 1 0) surface, the conventional LSDA calculations give an underestimated band gap and there was no obvious improvement on the band gap after the treatment of U approximation was considered in LSDA. However, for the rutile TiO2(0 1 1)-2 × 1 surface, the conventional LSDA calculations could reproduce the optimal agreement with the experimental band gap ∼2.10 eV, leading to the LSDA + U calculations giving an overestimation to the band gap. Finally, the calculated optical properties of the rutile TiO2(1 1 0) and (0 1 1)-2 × 1 surfaces further proved the above same.
AB - We present a study concerning the effect of the on-site Coulomb interaction term U on the electronic and optical properties of the rutile TiO2(1 1 0) surface as compared with those of the rutile TiO2(0 1 1)-2 × 1 surface. The calculations were performed using the so-called LSDA + U approach, in which U = 5 eV was added for the treatment of the Ti-3d electrons. For the rutile TiO2(1 1 0) surface, the conventional LSDA calculations give an underestimated band gap and there was no obvious improvement on the band gap after the treatment of U approximation was considered in LSDA. However, for the rutile TiO2(0 1 1)-2 × 1 surface, the conventional LSDA calculations could reproduce the optimal agreement with the experimental band gap ∼2.10 eV, leading to the LSDA + U calculations giving an overestimation to the band gap. Finally, the calculated optical properties of the rutile TiO2(1 1 0) and (0 1 1)-2 × 1 surfaces further proved the above same.
KW - Electronic properties
KW - Optical properties
KW - Titanium dioxide
UR - http://www.scopus.com/inward/record.url?scp=84899419412&partnerID=8YFLogxK
U2 - 10.1016/j.commatsci.2014.03.067
DO - 10.1016/j.commatsci.2014.03.067
M3 - Article
AN - SCOPUS:84899419412
SN - 0927-0256
VL - 90
SP - 1
EP - 6
JO - Computational Materials Science
JF - Computational Materials Science
ER -