TY - GEN
T1 - Study on structures and dielectric properties of (LixNb 1-x)0.25Ti0.75O2 based on molecular simulation
AU - Cheng, Yonghong
AU - Yu, Sujiao
AU - Xie, Xiaojun
AU - Sheng, Xue
PY - 2011
Y1 - 2011
N2 - Microwave dielectric ceramics are widely used in microwave communication, because of their favorable dielectric properties. Many experimental researches for the new ceramic materials (LixNb1-x) 0.25Ti0.75O2(LNT, x=0.2, 0.4, 0.6) have been carried out. However, few of computer simulations have been implemented, due to their complex structures of a solid solution. In this present, molecular simulation was applied to research on structures and dielectric properties. The supercell structures of the LNT were built by experimental X-ray diffraction spectra and optimized by using density functional theory, to solve the complex structure problem of the solid solution. Based on the optimized supercells, the band structures and optical permittivity were also calculated. Infrared spectrum was computed using density functional perturbation theory to obtain the dielectric constant. The simulation results are corresponded well with experiments. Optimized structures show that the substitution of lithium and niobium for titanium in rutile causes lattice distortion. The results of infrared spectrum reveal that dielectric constant decreases if value of x is increased.
AB - Microwave dielectric ceramics are widely used in microwave communication, because of their favorable dielectric properties. Many experimental researches for the new ceramic materials (LixNb1-x) 0.25Ti0.75O2(LNT, x=0.2, 0.4, 0.6) have been carried out. However, few of computer simulations have been implemented, due to their complex structures of a solid solution. In this present, molecular simulation was applied to research on structures and dielectric properties. The supercell structures of the LNT were built by experimental X-ray diffraction spectra and optimized by using density functional theory, to solve the complex structure problem of the solid solution. Based on the optimized supercells, the band structures and optical permittivity were also calculated. Infrared spectrum was computed using density functional perturbation theory to obtain the dielectric constant. The simulation results are corresponded well with experiments. Optimized structures show that the substitution of lithium and niobium for titanium in rutile causes lattice distortion. The results of infrared spectrum reveal that dielectric constant decreases if value of x is increased.
KW - LNT solid solution
KW - born effective charge
KW - dielectric properties
KW - molecular simulation
UR - https://www.scopus.com/pages/publications/80053362505
U2 - 10.1109/ISAF.2011.6014131
DO - 10.1109/ISAF.2011.6014131
M3 - 会议稿件
AN - SCOPUS:80053362505
SN - 9781457711626
T3 - 2011 International Symposium on Applications of Ferroelectrics and 2011 International Symposium on Piezoresponse Force Microscopy and Nanoscale Phenomena in Polar Materials, ISAF/PFM 2011
BT - 2011 International Symposium on Applications of Ferroelectrics and 2011 International Symposium on Piezoresponse Force Microscopy and Nanoscale Phenomena in Polar Materials, ISAF/PFM 2011
T2 - 2011 International Symposium on Applications of Ferroelectrics and 2011 International Symposium on Piezoresponse Force Microscopy and Nanoscale Phenomena in Polar Materials, ISAF/PFM 2011
Y2 - 24 July 2011 through 27 July 2011
ER -