Cairo Raúl Ramos, Stevens Ana María Plutín, de Oliveira Tamires Donizeth, Batista Alzir A, Castellano Eduardo E, Duque Julio, Soria Delia B, Fantoni Adolfo C, Corrêa Rodrigo S, Erben Mauricio F
Laboratorio de Síntesis Orgánica, Facultad de Química, Universidad de La Habana, La Habana, Cuba.
Laboratorio de Síntesis Orgánica, Facultad de Química, Universidad de La Habana, La Habana, Cuba.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Apr 5;176:8-17. doi: 10.1016/j.saa.2016.12.038. Epub 2016 Dec 28.
1-Acyl thioureas [RC(O)NHC(S)NRR] are shown to display conformational flexibility depending on the degree of substitution at the nitrogen atom. The conformational landscape and structural features for two closely related thioureas having R=2-furoyl have been studied. The un-substituted 2-furoyl thiourea (I) and its dimethyl analogue, i.e. 1-(2-furoyl)-3,3-dimethyl thiourea (II), have been synthesized and fully characterized by spectroscopic (FT-IR, H and C NMR) and elemental analysis. According to single crystal X-ray diffraction analysis, compounds I and II crystallize in the monoclinic space group P21/c. In the compound I, the trans-cis geometry of the almost planar thiourea unit is stabilized by intramolecular NH⋯OC hydrogen bond between the H atom of the cis thioamide and the carbonyl O atom. In compound II, however, the acyl thiourea group is non-planar, in good agreement with the potential energy curve computed at the B3LYP/6-31+G(d,p) level of approximation. Centrosymmetric dimers generated by intermolecular NH⋯SC hydrogen bond forming R(8) motif are present in the crystals. Intermolecular interactions have been rationalized in terms of topological partitions of the electron distributions and Hirshfeld surface analysis, which showed the occurrence of S⋯H, O⋯H and H⋯H contacts that display an important role to crystal packing stabilization of both thiourea derivatives.
1-酰基硫脲[RC(O)NHC(S)NRR]已被证明根据氮原子上的取代程度表现出构象灵活性。已研究了两种密切相关的R = 2-呋喃甲酰基硫脲的构象态势和结构特征。未取代的2-呋喃甲酰基硫脲(I)及其二甲基类似物,即1-(2-呋喃甲酰基)-3,3-二甲基硫脲(II),已被合成并通过光谱(傅里叶变换红外光谱、氢和碳核磁共振)和元素分析进行了全面表征。根据单晶X射线衍射分析,化合物I和II结晶于单斜空间群P21/c中。在化合物I中,几乎平面的硫脲单元的反式-顺式几何结构通过顺式硫代酰胺的氢原子与羰基氧原子之间的分子内NH⋯OC氢键得以稳定。然而,在化合物II中,酰基硫脲基团是非平面的,这与在B3LYP/6-31+G(d,p)近似水平计算的势能曲线一致。由分子间NH⋯SC氢键形成R(8) motif产生的中心对称二聚体存在于晶体中。分子间相互作用已根据电子分布的拓扑划分和Hirshfeld表面分析进行了合理化,结果表明S⋯H、O⋯H和H⋯H接触的出现对两种硫脲衍生物的晶体堆积稳定性起着重要作用。