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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structure of Ca(BD4)(2) beta-phase from combined neutron and synchrotron X-ray powder diffraction data and density functional calculations
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Structure of Ca(BD4)(2) beta-phase from combined neutron and synchrotron X-ray powder diffraction data and density functional calculations

机译:从中子和同步加速器X射线粉末衍射数据和密度泛函计算的结果来看,Ca(BD4)(2)β相的结构

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We have investigated the crystal structure of Ca(BD4)(2) by combined synchrotron radiation X-ray powder diffraction, neutron powder diffraction, and ab initio calculations. Ca(BD4)(2) shows a variety of structures depending on the synthesis and temperature of the samples. An unknown tetragonal crystal of Ca(BD4)(2), the phase has been solved from diffraction data measured at 480 K on a sample synthesized by solid-gas mechanochemical reaction by using MgB2 as starting material. Above 400 K, this sample has the particularity to be almost completely into the beta phase of Ca(BD4)(2). Seven tetragonal structure candidates gave similar fit of the experimental data. However, combined experimental and ab initio calculations have shown that the best description of the structure is with the space group P4(2)/m based on appropriate size/geometry of the (BD4) tetrahedra, the lowest calculated formation energy, and real positive vibrational energy, indicating a stable structure. At room temperature, this sample consists mainly of the previously reported alpha phase with space group Fddd. In the diffraction data, we have identified weak peaks of a hitherto unsolved structure of an orthorombic gamma phase of Ca(BD4)(2). To properly fit the diffraction data used to solve and refine the structure of the beta phase, a preliminar structural model of the gamma phase was used. A second set of diffraction data on a sample synthesized by wet chemical method, where the gamma phase is present in significant amount, allowed us to index this phase and determine the preliminar model with space group Pbca. Ab initio calculations provide formation energies of the alpha phase and beta phase of the same order of magnitude (Delta H <= 0.15 eV). This indicates the possibility of coexistence of these phases at the same thermodynamical conditions.
机译:我们已经通过组合同步辐射X射线粉末衍射,中子粉末衍射和从头算计算研究了Ca(BD4)(2)的晶体结构。 Ca(BD4)(2)根据样品的合成和温度显示出各种结构。 Ca(BD4)(2)的未知四方晶体,已通过在以MgB2为起始原料通过固-气机械化学反应合成的样品上于480 K下测得的衍射数据中解决了该相。高于400 K,此样品的特殊性是几乎完全进入Ca(BD4)(2)的β相。七个四边形结构候选物提供了相似的实验数据。然而,结合实验和从头算计算表明,该结构的最佳描述是基于(BD4)四面体的适当尺寸/几何,最低的形成能量和真实的正数,而基于空间群P4(2)/ m振动能量,表明结构稳定。在室温下,该样品主要由先前报道的空间相为Fddd的α相组成。在衍射数据中,我们已经确定了Ca(BD4)(2)的正交各向异性伽马相的迄今未溶解结构的弱峰。为了正确拟合用于解析和完善β相结构的衍射数据,使用了γ相的初步结构模型。通过湿化学方法合成的样品的第二组衍射数据,其中存在大量的γ相,这使我们可以为该相建立索引并确定具有空间群Pbca的初步模型。从头算就可以提供相同数量级(δH <= 0.15 eV)的α相和β相的形成能。这表明在相同的热力学条件下这些相可以共存。

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