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首页> 外文期刊>Zeitschrift fur Kristallographie: International Journal for Structural, Physical, and Chemical Aspects of Crystalline Materials >Crystal and molecular structures of three 2-sulphur-substituted cyclohexanones studied by X-ray crystallography and by ab initio molecular orbital calculations
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Crystal and molecular structures of three 2-sulphur-substituted cyclohexanones studied by X-ray crystallography and by ab initio molecular orbital calculations

机译:通过X射线晶体学和从头算分子轨道计算研究了三种2-硫取代的环己酮的晶体和分子结构

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摘要

The conformational features of three 2-sulphur-substituted cyclohexanone derivatives, which differ in the number of sulphur-bound oxygen atoms, i.e. zero (I), one (II) and two (III), were investigated by single crystal X-ray crystallography and geometry optimized structures determined using Hartree-Fock method. In each of (I)-(III) an intramolecular S center dot center dot center dot O-carbonyl interaction is found with the magnitude correlated with the oxidation state of the sulphur atom, i.e. 2.838(3) angstrom in (I) to 2.924(2) angstrom in (II) to 3.0973(18) angstrom in (III). There is an inverse relationship between the strength of this interaction and the magnitude of the carbonyl bond. The supramolecular aggregation patterns are primarily determined by C-H center dot center dot center dot O contacts and are similarly influenced by the number of oxygen atoms in the molecular structures. Thus, a supramolecular chain is found in the crystal structure of (I). With an additional oxygen atom available to participate in C-H center dot center dot center dot O interactions, as in (II), a two-dimensional array is found. Finally, a three-dimensional network is found for (III). Despite there being differences in conformations between the experimental structures and those calculated in the gas-phase, the S center dot center dot center dot O interactions persist. The presence of intermolecular C-H center dot center dot center dot O interactions involving the cyclohexanone-carbonyl group in the solid-state, disrupts the stabilising intramolecular C-H center dot center dot center dot O interaction in the energetically-favoured conformation. (I): C12H13NO3S, triclinic space group P (1) over bar with a = 5.392(3) angstrom b = 10.731(6) angstrom, c = 11.075(6) angstrom, alpha = 113.424(4)degrees, beta = 94.167(9)degrees, gamma = 98.444(6)degrees, V = 575.5(6) angstrom(3), Z = 2, R-1 = 0.052; (II): C12H13NO4S, monoclinic P2(1), a = 7.3506(15) angstrom, b = 6.7814(14) angstrom, c = 23.479(5) angstrom, beta = 92.94(3)degrees, V = 1168.8(4) angstrom(3), Z = 4, R-1 = 0.046; (III): C12H13NO5S, monoclinic P2(1)/c, a = 5.5491(11) angstrom, b = 24.146(3) angstrom, c = 11.124(3) angstrom, beta = 114.590(10)degrees, V = 1355.3(5) angstrom(3), Z = 4, R-1 = 0.051.
机译:通过单晶X射线晶体学研究了三种2-硫取代的环己酮衍生物的构象特征,它们在硫结合的氧原子数上不同,即零(I),一个(II)和两个(III)使用Hartree-Fock方法确定的几何优化结构。在(I)-(III)的每一个中,发现分子内S中心点中心点中心点O-羰基相互作用的幅度与硫原子的氧化态相关,即在(I)中为2.838(3)埃至2.924。 (II)中的(2)埃至(III)中的3.0973(18)埃。这种相互作用的强度与羰基键的大小之间存在反比关系。超分子聚集模式主要由C-H中心点中心点中心点O接触确定,并且类似地受分子结构中氧原子数的影响。因此,在(I)的晶体结构中发现了超分子链。与(II)中一样,利用额外的氧原子可参与C-H中心点中心点中心点O相互作用,发现了二维阵列。最后,为(III)找到了三维网络。尽管实验结构和气相计算的构象之间存在差异,但S中心点中心点中心点O相互作用仍然存在。在固态中涉及环己酮-羰基的分子间C-H中心点中心点中心点O相互作用的存在破坏了在能量有利的构象中稳定的分子内C-H中心点中心点中心点O相互作用。 (I):C12H13NO3S,条带上的三斜线空间群P(1),a = 5.392(3)埃b = 10.731(6)埃,c = 11.075(6)埃,alpha = 113.424(4)度,beta = 94.167 (9)度,γ= 98.444(6)度,V = 575.5(6)埃(3),Z = 2,R-1 = 0.052; (II):C 12 H 13 NO 4 S,单斜晶P 2(1)/ n,a = 7.3506(15)埃,b = 6.7814(14)埃,c = 23.479(5)埃,β= 92.94(3)度,V = 1168.8( 4)埃(3),Z = 4,R-1 = 0.046; (III):C12H13NO5S,单斜晶P2(1)/ c,a = 5.5491(11)埃,b = 24.146(3)埃,c = 11.124(3)埃,β= 114.590(10)度,V = 1355.3( 5)埃(3),Z = 4,R-1 = 0.051。

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