Oxide chemistry and local structure of PbZrxTi1ÀxO3 studied by density-functional theory supercell calculations
نویسندگان
چکیده
The PbZrxTi12xO3 ~PZT! disordered solid solution is widely used in piezoelectric applications due to its excellent electromechanical properties. The disorder is caused by the random arrangement of B cations. To understand the relationship between properties of constituent atoms, local structure, and compositional phase transitions, we examine the response of the individual Pb atoms, B cations, and oxygen cages to the variation in the Zr/Ti arrangement and composition through first-principles density-functional-theory ~DFT! calculations on a variety of PZT supercells. We use a statistical analysis of the relaxed DFT structures to identify crystal chemical structural motifs present in the Zr-rich rhombohedral, 50/50 monoclinic, and Ti-rich tetragonal phases of PZT and to examine the influence of composition variation on the motifs. We find that the distortions of the structure away from the ideal perovskite structure are governed by an interplay of bonding, electrostatic, and short-range repulsive interactions that depends on the B-cation arrangement. For Pb-atom displacements, there is a competition between electrostatic and bonding interactions that favor ordered collinear displacements, and local repulsive interactions that favor disorder. This competition is strongly affected by the changes in Zr/Ti composition and leads to compositional phase boundaries in PZT.
منابع مشابه
Theoretical Study on Structure and Electronic Properties of Aniline-5-Membered Heterocyclic Co-oligomers
With the aim of exploring the electronic and optical properties of some interesting conductive copolymers in view of potential applications, a regular oligomer systems made of aniline and three reference heterocyclic compounds (pyrrole, thiophene and furan) are studied using density functional theory (DFT) and time dependent density functional theory (TDDFT) calculations at B3LYP/6-31+G(d,p) le...
متن کاملA Density Functional Theory Study of Structure of Phosphonic Acid
The molecular structure of the stable conformation of phosphonic acid in gas phase has beencomputed by employing complete geometry optimization in Density Functional Theory(DFT) methods. The methods used for calculations are B3LYP, BP86 and B3PW91 that havebeen studied in two series of basis sets: D95** and 6-31+G(d,p) for hydrogen and oxygenatoms; LANL2DZ for phosphorus. Bond lengths and angle...
متن کاملمحاسبه میدان مغناطیسی فوق ریز در مکان هستههای Cd ,Rh ,FeوSn در بلور کروم
The incommensurate spin -density –wave magnetism of Cr has attracted great interest since its discovery via neutron scattering. Although the existence of spin- density –wave has been confirmed by experiment but the calculations which have been carried out have not been able to predict the correct ground state magnetic phase for chromium yet. To predict the magnetic hyperfine field at nucleus ...
متن کاملFirst-principles study on the electronic structure of Thiophenbithiol (TBT) on Au(100) surface
First principle calculations were performed using Density functional theory within the local spin density approximation (LSDA) to understand the electronic properties of Au(100)+TBT system and compare the results with Au(100) and bulk Au properties. Band structure, the total DOS and charge density for these materials are calculated. We found that the HOMO for Au(100)+TBT becomes broader than Au...
متن کاملFirst-principles study on the electronic structure of Thiophenbithiol (TBT) on Au(100) surface
First principle calculations were performed using Density functional theory within the local spin density approximation (LSDA) to understand the electronic properties of Au(100)+TBT system and compare the results with Au(100) and bulk Au properties. Band structure, the total DOS and charge density for these materials are calculated. We found that the HOMO for Au(100)+TBT becomes broader than Au...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2004