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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Experimental and Theoretical Investigations on Structural and Vibrational Properties of Melilite-Type Sr2ZnGe2O7 at High Pressure and Delineation of a High-Pressure Monoclinic Phase
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Experimental and Theoretical Investigations on Structural and Vibrational Properties of Melilite-Type Sr2ZnGe2O7 at High Pressure and Delineation of a High-Pressure Monoclinic Phase

机译:硅铁矿型Sr2ZnGe2O7的高压结构和振动特性及高压单斜相轮廓的实验和理论研究

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We report a combined experimental and theoretical study of melilite-type germanate, Sr2ZnGe2O7, under compression. In situ high-pressure X-ray diffraction and Raman scattering measurements up to 22 GPa were complemented with first-principles theoretical calculations of structural and lattice dynamics properties. Our experiments show that the tetragonal structure of Sr2ZnGe2O7 at ambient conditions transforms reversibly to a monoclinic phase above 12.2 Gpa with similar to 1% volume drop at the phase transition pressure. Density functional calculations indicate the transition pressure at, similar to 13 GPa, which agrees well with the experimental value. The structure of the high-pressure monoclinic phase is closely related to the ambient pressure phase and results from a displacive-type phase transition. Equations of state of both tetragonal and monoclinic phases are reported. Both of the phases show anisotropic compressibility with a larger compressibility in the direction perpendicular to the [ZnGe2O7](2-) sheets than along the sheets. Raman-active phonons of both the tetragonal and monoclinic phases and their pressure dependences were also determined. Tentative assignments of the Raman modes of the tetragonal phase were discussed in the light of lattice dynamics calculations. A possible irreversible second phase transition to a highly disordered or amorphous state is detected in Raman scattering measurements above 21 GPa.
机译:我们报告了在压缩下的陨石型锗酸盐Sr2ZnGe2O7的组合实验和理论研究。原位高压X射线衍射和拉曼散射测量(最高22 GPa)与结构和晶格动力学性质的第一原理理论计算相辅相成。我们的实验表明,在环境条件下Sr2ZnGe2O7的四方结构可逆地转变为高于12.2 Gpa的单斜晶相,在相变压力下体积降幅接近1%。密度泛函计算表明,转变压力约为13 GPa,与实验值非常吻合。高压单斜晶相的结构与环境压力相密切相关,并且是由位移型相变产生的。报告了四方相和单斜相的状态方程。这两个相均显示出各向异性压缩性,与[ZnGe2O7](2-)薄片垂直的方向的压缩性大于沿着这些薄片的压缩性。还确定了四方相和单斜相的拉曼活性声子及其压力依赖性。根据晶格动力学计算,讨论了四方相的拉曼模式的初步分配。在高于21 GPa的拉曼散射测量中检测到可能的不可逆的第二相转变为高度无序或非晶态。

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