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Molecular Orbital Calculation of Lead-Free Perovskite Compounds for Efficient Use of Alkaline and Alkaline Earth Metals

机译:用于有效使用碱性和碱土金属的无铅钙钛矿化合物的分子轨道计算

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摘要

The effective ionic charges of lead-free perovskite dielectric complex compounds were investigated with molecular orbital calculation. The base model was a double perovskite cluster that consisted of octahedral oxygen cages with a transition metal ion of titanium, niobium, or zirconium located at each of their centers, and alkali and/or alkaline earth metal ions located at the body center, corners, edge centers, or face centers of the cluster. The results showed significant covalent bonds between the transition metals and the oxygens, and the alkali metals, especially sodium and oxygen. On the other hand, the alkaline earth metals have weak covalency. Calculation was also performed with the replacement of some of the oxygens with chlorine or fluorine; such replacement enhances the covalency of the transition metals. These trends provide good guidelines for the design properties of lead-free perovskite piezoelectrics based on ubiquitous sodium use.
机译:利用分子轨道计算研究了无铅钙钛矿介电复合物的有效离子电荷。基础模型是一种双钙钛矿簇,其由八氮二面的氧笼组成,其中钛,铌或位于其各中心,碱和/或碱土金属离子位于身体中心,拐角处的碱和/或碱土金属离子,边缘中心或群体的面部中心。结果显示过渡金属和氧气之间的显着共价键,以及碱金属,尤其是钠和氧气。另一方面,碱土金属具有薄弱的共价。还使用氯或氟的一些氧式进行计算。这种替换增强了过渡金属的共价。这些趋势为基于普遍存在的钠使用的无铅钙钛矿压电设计的设计性能提供了良好的准则。

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