Tin(IV) Halides Zero-dimensional based Inorganic-Organic Hybrid Materials: Crystal Structures and Hirshfeld Surface Analysis

M. Ndiaye, Serigne Fallou Pouye, M. Diop, L. Diop,, Abdoulaye Samb, Allen G. Oliver
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Abstract

Two tetramethylguanidinium halostannate inorganic-organic hybrid compounds was isolated and structurally investigated by single crystal X-ray crystallography and Hirshfeld surface analysis. The compound [(C6H14N3)2SnCl6] (1), crystallizes in the orthorhombic space group Fddd with Z = 8 / Z’ = 0.25, a = 7.3474(3) Å, b = 22.3678(8) Å, c = 28.4908(10) Å and V = 4682.3(3) Å3. The compound [(C6H14N3)2SnBr6] (2), crystallizes in the orthorhombic space group Fddd with Z = 8 / Z’ = 0.25, a = 7.5767(5) Å, b = 23.0591(17) Å, c = 29.008(2) Å and V = 5068.0(6) Å3. The isolation of 1 undergoes a redox process from Sn(II) to Sn(IV) in solution and in a non-controlled atmosphere. Both compounds 1 and 2 describe TMG+ ions with a central carbon atom in a trigonal–planar fashion. With respect to this CN3 plane, the pairs of di­methyl­ammonium groups are twisted by 13.70 (8) and 32.21 (8)° for 1, 14.88 (13) and 31.95(13)° for 2. The SnX6 dianions evidence a slightly distorted octahedron (Oh) about Sn centre for hybrids 1 and 2. Within the structures of the hybrid materials 1 and 2, N-H···Cl inter-species hydrogen bonding patterns between the inorganic stannate and the organic entities give rise a one-dimensional chain, wherein inorganic and organic species alternate. The propagation of the chain generates rings. The weak C-H···X hydrogen bonds formed from the methyl groups to adjacent tetramethylguanidinium-stannate chains result in a supramolecular three-dimensional hydrogen-bonded network. The Hirshfeld surface analysis shows existence of both strong and weak hydrogen bonding interactions. Inspection of 1 and 2 by the Hirshfeld surface analysis, show isostructural behavior. Hybrids 1 and 2 are the first crystal reports of a tetramethylguanidinium tetra- or hexa-halostannate.
锡(IV)卤化物零维无机-有机杂化材料:晶体结构和表面分析
采用单晶x射线晶体学和Hirshfeld表面分析对两种四甲基胍盐酸盐无机-有机杂化化合物进行了分离和结构研究。化合物[(C6H14N3)2SnCl6](1)在正交空间群Fddd中结晶,Z = 8 / Z′= 0.25,a = 7.3474(3) Å, b = 22.3678(8) Å, c = 28.4908(10) Å, V = 4682.3(3) Å3。化合物[(C6H14N3)2SnBr6](2)在正交空间群Fddd中结晶,Z = 8 / Z′= 0.25,a = 7.5767(5) Å, b = 23.0591(17) Å, c = 29.008(2) Å, V = 5068.0(6) Å3。1的分离在溶液和非控制气氛中经历了从Sn(II)到Sn(IV)的氧化还原过程。化合物1和2都描述了以三角平面形式中心碳原子的TMG+离子。在CN3平面上,二甲基铵基团对的扭曲度分别为13.70(8)和32.21(8)°,2为14.88(13)和31.95(13)°。SnX6离子表明杂化1和杂化2的Sn中心有轻微扭曲的八面体Oh。在杂化材料1和2的结构中,无机锡酸盐和有机实体之间的N-H···Cl种间氢键模式产生了一个一维链,其中无机和有机物质交替存在。链的传播产生环。甲基与相邻的四甲基胍-锡酸盐链形成弱的C-H··X氢键,形成超分子三维氢键网络。Hirshfeld表面分析表明,存在强弱氢键相互作用。通过Hirshfeld表面分析检查1和2,显示出等结构行为。杂化体1和2是首次报道的四甲基胍四盐或六盐酸盐晶体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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