Novel supramolecular structures constructed through hydrogen bonding (E–H⋯Cl; E = C, N, and O) and/or halogen–halogen interactions in the products of reactions of 2-[(trimethylsilyl)methyl]pyridine with TeCl4 or TeI4

IF 2.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
CrystEngComm Pub Date : 2025-09-12 DOI:10.1039/D5CE00646E
Aarti Saini, Dharmveer Bhedi and Ramalingam Thirumoorthi
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Abstract

Three new complexes, [(2-C5H4NH)CH2TeI4] (1), [2-(Me3SiCH2)C5H4NH]2[TeCl6] (2), and [2-(CH3)C5H4NH]2[(HO)TeCl5] (3), were obtained by the direct reaction of 2-[(trimethylsilyl)methyl]pyridine with TeI4 or TeCl4 in toluene. Single-crystal X-ray diffraction analysis (SCXRD) confirms that compound 1 is the first zwitterion-type complex in the organotellurium iodide family, whereas the remaining two are ionic. The asymmetric unit in 2 has only one-half of the anionic unit of [TeCl6]2−, whereas a whole unit is present in 3, because the latter anionic species loses 21 screw axes. A discrete organotellurium iodide complex, [(2-C5H4NH)CH2TeI4], transforms into a dimer, [(2-C5H4NH)CH2TeI4]2, due to weak secondary Te⋯I interactions, and subsequently, it transforms into a 2D-structure, [(2-C5H4NH)CH2TeI4]n, through iodine–iodine intermolecular interactions. The formation of 2D-supramolecular structures arises through intermolecular hydrogen bonding between a pyridinium cation and [TeCl6]2− (2)/[(HO)TeCl5]2− (3) anionic species. A weak chlorine–chlorine interaction is seen in both 2 and 3.

Abstract Image

在2-[(三甲基硅基)甲基]吡啶与TeCl4或TeI4反应的产物中,通过氢键(E - h⋯Cl; E = C, N和O)和/或卤素相互作用构建了新的超分子结构
在甲苯中,2-[(三甲基硅基)甲基]吡啶与TeI4或TeCl4直接反应,得到了[(2-C5H4NH)CH2TeI4](1)、[2-(Me3SiCH2)C5H4NH]2[TeCl6](2)和[2-(CH3)C5H4NH]2[(HO)TeCl5](3)三个新的配合物。单晶x射线衍射分析(SCXRD)证实,化合物1是有机碘化碲家族中第一个两性离子型配合物,其余两个为离子型配合物。2中的不对称单元只有[TeCl6]2−的阴离子单元的一半,而3中则有一个完整的单元,因为后者的阴离子种失去了21个螺旋轴。离散的有机碘化碲络合物[(2- c5h4nh)CH2TeI4],由于弱的二级Te⋯I相互作用,转化为二聚体[(2- c5h4nh)CH2TeI4]2,随后,它通过碘-碘分子间相互作用转化为二维结构[(2- c5h4nh)CH2TeI4]n。二维超分子结构的形成是通过吡啶阳离子与[TeCl6]2−(2)/[(HO)TeCl5]2−(3)阴离子之间的分子间氢键形成的。在2和3中都可以看到弱的氯-氯相互作用。
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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来源期刊
CrystEngComm
CrystEngComm 化学-化学综合
CiteScore
5.50
自引率
9.70%
发文量
747
审稿时长
1.7 months
期刊介绍: Design and understanding of solid-state and crystalline materials
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