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首页> 外文期刊>International Journal of Quantum Chemistry >Crystal structure and structural disorder of (Ba0.65Ca0.35)(2)SiO4
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Crystal structure and structural disorder of (Ba0.65Ca0.35)(2)SiO4

机译:(Ba0.65Ca0.35)(2)SiO4的晶体结构和结构无序

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Crystal structure and structural disorder of (B0.65Ca0.35)(2)SiO4 were investigated by laboratory X-ray powder diffraction (CuK alpha(1)). The initial structural model with eleven independent atoms in the unit cell was determined using direct methods, and it was further modified to a split-atom model, in which the two types of Ba/Ca atoms and two types of SiO4 tetrahedra were, respectively, positionally and orientationally disordered. The crystal structure is trigonal (space group P (3) over bar ml, Z = 4) with lattice dimensions a= 0.57505(1) rim, c = 1.46706(2) nm and V = 0.42014(1) nm(3). The validity of the structural model was verified by the three-dimensional electron density distribution, the structural bias of which was reduced as much as possible using the maximum-entropy methods-based pattern fitting (MPF). The final reliability indices calculated from the MPF were R-wp = 9.56% (S = 1.48), R-p = 7.29%, R-B = 1.82% and R-F = 0.88%. This compound is most probably homeotypic to glaserite. (C) 2007 Elsevier Inc. All rights reserved.
机译:通过实验室X射线粉末衍射(CuK alpha(1))研究了(B0.65Ca0.35)(2)SiO4的晶体结构和结构无序。使用直接方法确定了在晶胞中具有11个独立原子的初始结构模型,并将其进一步修改为分裂原子模型,其中两种类型的Ba / Ca原子和两种类型的SiO4四面体分别为:位置和方向混乱。晶体结构是三角形的(在bar ml上的空间群P(3),Z = 4),晶格尺寸为a = 0.57505(1)边缘,c = 1.46706(2)nm,V = 0.42014(1)nm(3)。通过三维电子密度分布验证了结构模型的有效性,该三维电子密度分布使用基于最大熵方法的图案拟合(MPF)尽可能降低了结构偏差。由MPF计算得出的最终可靠性指标为R-wp = 9.56%(S = 1.48),R-p = 7.29%,R-B = 1.82%和R-F = 0.88%。该化合物很可能是钠钙石的同型。 (C)2007 Elsevier Inc.保留所有权利。

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