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Electronic Structure of Bulk and Defected CaCu{sub}3Ti{sub}4O{sub}12

机译:散装电子结构和缺陷Cacu {Sub} 3Ti {Sub} 4o {sub} 12

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The calcium copper titanate CaCu{sub}3Ti{sub}4O{sub}12 is a distorted perovskite exhibiting a giant dielectric constant with non-ferroelectric temperature behavior. Recent investigations tend to attribute the origin of the anomalous behavior of CaCu{sub}3Ti{sub}4O{sub}12 dielectric properties to the presence of heterogeneous microstructure and grain boundary layers, excluding that the giant dielectric constant is present in perfectly stoichiometric, defect-free crystals. The intrinsic origin is also ruled out by the normal dielectric behavior obtained in ab initio Density Functional Theory (DFT) calculations. In this work, we present ab initio calculations performed to estimate the energies associated with the creation of defects in the CaCu{sub}3Ti{sub}4O{sub}12 lattice, including oxygen and copper vacancies, and investigate their electronic properties. Furthermore, with a view at ascertaining whether correlation effects may modify the electronic structure and dielectricity of CaCu{sub}3Ti{sub}4O{sub}12, we present an application to CaCu{sub}3Ti{sub}4O{sub}12 of a DFT-based pseudo-selfinteraction-correction (pSIC) method already applied successfully to Mott insulators.
机译:钛酸钙铜CaCu {子} 3Ti {子} {40}的子12是一个扭曲的钙钛矿表现出与非铁电温度特性巨介电常数。最近的研究倾向于CaCu {子} 3Ti {子} 40 {子} 12个的介电特性的异常行为的原点属性异构微观结构和晶界层的存在,但不包括巨介电常数存在于完全化学计量的,无缺陷的晶体。内在的起源也由从头密度泛函理论(DFT)计算获得普通电介质的行为排除在外。在这项工作中,我们提出从头计算执行来估计与在CaCu {子}创建的缺陷有关的能量3Ti {子} {40}的子晶格12,包括氧气和铜空位,并调查它们的电子特性。此外,在断定相关效应是否可以修改CaCu {子} 3Ti {子} 40 {子} 12的电子结构和介电性的图中,我们提出一个应用程序CaCu {子} 3Ti {子} 40 {子} 12一个基于DFT的伪selfinteraction校正的(PSIC)方法已经成功地应用于莫特绝缘体。

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