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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Theoretical and Experimental Study of (Ba,Sr)TiO3 Perovskite Solid Solutions and BaTiO3/SrTiO3 Heterostructures
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Theoretical and Experimental Study of (Ba,Sr)TiO3 Perovskite Solid Solutions and BaTiO3/SrTiO3 Heterostructures

机译:(BA,SR)TiO3钙钛矿固溶体和BATIO3 / SRTIO3异质结构的理论和实验研究

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The results of experimental and theoretical ab initio study of structural and piezoelectric properties of (Ba,Sr)TiO3 perovskite solid solutions are discussed and compared. Experimentally, plate-like (Ba,Sr)TiO3 particles were synthesized by the topochemical conversion in the molten salt from Bi4Ti3O12 template plates. All dimensions (side length approximate to 1 mu m, thickness approximate to 200-400 nm) were well above the critical size necessary for observation of piezo- and ferroelectricity. The first-principles computations of the structural and electromechanical properties of solid solutions were performed with the CRYSTAL14 computer code within the linear combination of atomic orbitals approximation, using three advanced hybrid functionals of density functional theory. Different chemical compositions are considered for the ferroelectric and paraelectric phases. The calculated structural properties of solid solutions in tetragonal and cubic phases are in very good agreement with experimental data. Experimentally obtained and calculated band gaps are compared for cubic SrTiO3 and tetragonal BaTiO3. BaTiO3/SrTiO3 heterostructures were considered theoretically for different chemical compositions. The calculated piezoelectric properties of solid solutions and heterostructures in the ferroelectric phase are compared. It is predicted that both solid solutions and heterostructures improve the piezoelectric properties of bulk BaTiO3, but solid solutions are more preferable for equal Sr concentrations.
机译:的(BA,Sr)TiO3基钙钛矿结构和压电性能的实验和理论从头研究的结果固溶体进行了讨论和比较。在实验上,板状(BA,Sr)TiO3基颗粒通过在从钛酸铋模板板熔融盐中的局部化学转换合成。所有尺寸(边长近似为1微米,厚度近似200-400纳米)远远高于所需的压阻和铁电观察的临界尺寸。固溶体的结构和机电性质的第一性原理计算用原子轨道近似的线性组合中的CRYSTAL14计算机代码执行,使用密度泛函理论的三个高级混合泛函。不同的化学成分被认为是铁电和顺电相。在四方和立方相固溶体的计算结构特性与实验数据非常吻合。实验获得的和计算的能带间隙为立方钛酸锶和钛酸钡四方相比。钛酸钡/钛酸锶异质进行了理论考虑不同的化学组成。在铁电相的固溶体和异质结构的计算出的压电特性进行了比较。据预测,既固溶体和异质提高散装BaTiO 3的压电特性,但固溶体是相等的Sr浓度更优选的。

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