首页> 外文期刊>Solid state sciences >BaSm5[Si9Al3N20]O - a nitridoaluminosilicate oxide with a new structure type composed of 'star-shaped' [N-[4]((Si,Al)N-3)(4)] units as secondary building units
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BaSm5[Si9Al3N20]O - a nitridoaluminosilicate oxide with a new structure type composed of 'star-shaped' [N-[4]((Si,Al)N-3)(4)] units as secondary building units

机译:BaSm5 [Si9Al3N20] O-一种新型结构的氮铝硅酸盐氧化物,由“星形” [N- [4]((Si,Al)N-3)(4)]单元作为辅助建筑单元

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The nitridoaluminosilicate oxide BaSM5[Si9Al3N20]O was obtained by the reaction of barium and samarium metal, BaCO3, AIN and '' Si(NH)(2)'' in a radiofrequency furnace at temperatures around 1850 degrees C. The crystal structure was determined by single-crystal X-ray diffraction at 200(2) K (P321, no. 150, Z = 1, a = 9.510(8) angstrom, c = 6.1207(5) angstrom, R1 = 0.0247). It represents a new structure type with channels filled with chains of oxygen anions with corner sharing trigonal-bipyramidal coordination spheres. The anionic (Si,Al)/N 3D-network is made up solely of '' star-shaped '' [N-[4]((Si,Al)N-3)(4)] units consisting of four (Si,Al)N-4 tetrahedra sharing a common central nitrogen atom. The structure refinement was performed utilizing an O/N-distribution model according to Paulings rules, i.e., nitrogen was positioned on all bridging sites and oxygen was positioned on the isolated position, resulting in charge neutrality of the compound. Thus a structure model representing a nitridoaluminosilicate oxide has been established. The Si and Al atoms have been distributed equally on their crystallographic sites, referring to their elemental proportion in the compound, due to being poorly distinguishable by X-ray methods. The chemical composition of the compound was derived from electron probe micro analyses (EPMA). (c) 2006 Elsevier SAS. All rights reserved.
机译:氮化铝铝酸盐氧化物BaSM5 [Si9Al3N20] O是通过钡和sa金属,BaCO3,AlN和``Si(NH)(2)''在射频炉中于1850摄氏度左右的温度反应制得的。确定了晶体结构通过在200(2)K处进行单晶X射线衍射(P321,No.150,Z = 1,a = 9.510(8)埃,c = 6.1207(5)埃,R1 = 0.0247)。它代表了一种新的结构类型,通道中充满了氧阴离子链,并具有角共享的三角-双锥体配位球。阴离子(Si,Al)/ N 3D网络仅由由四个(Si)组成的“星形” [N- [4]((Si,Al)N-3)(4)]单元组成,Al)N-4四面体共享一个共同的中心氮原子。根据Paulings规则,使用O / N分布模型进行结构优化,即,将氮放置在所有桥接位点上,将氧放置在隔离的位置上,从而使该化合物具有电荷中性。因此,已经建立了代表氮化铝硅酸盐氧化物的结构模型。硅和铝原子由于在X射线法中很难分辨,因此在其晶体学位置上均等分布,这是指它们在化合物中的元素比例。该化合物的化学成分来自电子探针显微分析(EPMA)。 (c)2006年Elsevier SAS。版权所有。

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