首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Combined theoretical and nanoscale experimental study of Pb(Ca,Ba) TiO3, Pb(Sr,Ba)TiO3, and Pb(Sr,Ca)TiO3 complex perovskite structures: An investigation of the ferroelectric and electronic properties
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Combined theoretical and nanoscale experimental study of Pb(Ca,Ba) TiO3, Pb(Sr,Ba)TiO3, and Pb(Sr,Ca)TiO3 complex perovskite structures: An investigation of the ferroelectric and electronic properties

机译:Pb(CA,BA)TiO3,Pb(SR,BA)TiO3和Pb(SR,CA)TiO3复合钙钛矿结构的组合理论和纳米级实验研究:对铁电和电子性能的研究

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Combined experimental and first-principles studies have been conducted to obtain a fundamental understanding of the effect of A-site chemical doping on the electronic structure and ferroelectric behavior of Pb(Ca,Ba)TiO3, Pb(Sr,Ba)TiO3, and Pb(Sr,Ca)TiO3 perovskite complex solid solutions. Rietveld refinement of powder X-ray diffraction data shows that the crystal structure of all the three compounds is distorted from the ideal cubic perovskite structure. At the nanoscale, piezoresponse force microscopy (PFM) studies show low-performance ferroelectric properties of Pb(Sr,Ca)TiO3 thin films when compared to Pb(Ca,Ba)TiO3 and Pb(Sr,Ba)TiO3 films. Theoretical analysis of the electronic band structure performed on the basis of density functional theory (DFT) allows to elucidate the origin of the different ferroelectric behaviors observed in Pb(Ca,Ba)TiO3, Pb(Sr,Ba)TiO3, and Pb(Sr,Ca)TiO3 thin films. DFT-based computational calculations reveal that there is a strong correlation between the effects of Ti 3d non-bonding orbitals (responsible for pi Ti-O bonding) and the ferroelectric polarization behavior of A(A'A")BO3 complex perovskite solid solutions. In our study, very low Ti 3d(xy,) d(xz), and d(y), non-bonding electronic density state contributions were observed and the presence of mainly ionic Ca-O and Sr-O bonds. These effects are the reason for the unusually weak polarization, low tetragonality, and poor ferroelectricity of Pb(Sr,Ca)TiO3 thin films. This is in contrast to the observed behaviors of Pb(Ca,Ba)TiO3 and Pb(Sr,Ba)TiO3 thin films. However, our first-principles calculations agree well with the PFM-based experimental results obtained in the nanometer scale. (C) 2017 Published by Elsevier B.V.
机译:已经进行了组合的实验和第一原理研究,以获得对A现场化学掺杂对PB(CA,BA)TiO3,PB(SR,BA)TiO3和PB的电子结构和铁电行为的影响的根本了解(SR,CA)TiO3 Perovskite复合物固体溶液。粉末X射线衍射数据的RIETVELD细化表明,所有三种化合物的晶体结构都从理想的立方钙钛矿结构扭曲。在纳米级,压电响应力显微镜(PFM)研究表明,与PB(CA,BA)TiO3和PB(SR,BA)TiO3薄膜相比,Pb(Sr,Ca)TiO3薄膜的低性能铁电性能。基于密度功能理论(DFT)进行的电子带结构的理论分析允许阐明在Pb(Ca,Ba)TiO3,Pb(Sr,Ba)TiO3和Pb(SR)中观察到的不同铁电行为的起源(SR ,ca)TiO3薄膜。基于DFT的计算计算表明,TI 3D非粘合轨道(负责PI TI-O键合)的效果与A(A'A“)BO3复合钙钛矿固体溶液的效应之间存在强烈的相关性。在我们的研究中,观察到非常低的Ti 3D(XY)D(XZ)和D(Y),非粘合电子密度状态贡献以及主要是离子CA-O和SR-O键。这些效果是异常弱的偏光,低四角性和Pb(Sr,Ca)TiO3薄膜的差的原因。这与观察到的Pb(Ca,Ba)TiO3和Pb(Sr,Ba)TiO3薄的行为相反电影。但是,我们的第一原理计算与纳米级中获得的基于PFM的实验结果很好。(c)2017由Elsevier BV发布

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