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首页> 外文期刊>New Journal of Chemistry >Mechanochemistry and cocrystallization of 3-iodoethynylbenzoic acid with nitrogen-containing heterocycles: concurrent halogen and hydrogen bonding
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Mechanochemistry and cocrystallization of 3-iodoethynylbenzoic acid with nitrogen-containing heterocycles: concurrent halogen and hydrogen bonding

机译:用含氮杂环的3-碘乙烯基苯甲酸的机械化学和基金化合物:同时卤素和氢键

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Halogen bonding has been shown to be a versatile interaction for crystal engineering purposes, with characteristics that parallel those of hydrogen bonding. Here, we explore the potential of a new halogen bond donor, 3-iodoethynylbenzoic acid (1), which is functionalized with both halogen bond donor and hydrogen bond donor groups. We explore its crystal engineering potential by cocrystallizing it with a series of nitrogen-containing heterocycles, namely 2,3,5,6-tetramethylpyrazine, 1,4-diazabicyclo[2.2.2] octane, piperazine, and hexamethylenetetramine. In total, we report six new single-crystal X-ray diffraction structures, including those of 1 and five of its halogen-bonded cocrystals. The halogen-bonded cocrystals are further investigated using C-13 magic-angle spinning solid-state NMR spectroscopy and the observed changes in chemical shifts are attributed to particular structural or crystallographic features. The C-13 chemical shift of the ethynyl carbon bonded to the aromatic ring consistently decreased by several ppm upon halogen bond formation while that of the ethynyl carbon bonded to iodine increased. Furthermore, we show that these cocrystals are also readily prepared by mechanochemical ball milling, allowing for the rapid screening of cocrystal formation based on this halogen bond donor.
机译:已经显示卤素键是晶体工程目的的通用相互作用,具有平行氢键的特性。这里,我们探讨了新的卤素键供体,3-碘乙烯基苯甲酸(1)的潜力,其用卤素键供体和氢键供体基团官能化。我们通过将其与含氮杂环的一系列含氮杂环通过将其进行Cocrystive,即2,3,5,6-四甲基吡嗪,1,4-二氮杂双环[2.2.2]辛烷,哌嗪和六亚甲基四胺来探讨其晶体工程电位。总共报告了六种新的单晶X射线衍射结构,包括1和5个卤素键合的烯库的X射线衍射结构。使用C-13魔角纺丝固态NMR光谱进一步研究卤素键合的酰基晶体,并且观察到的化学变化的变化归因于特定的结构或晶体特征。键合与芳环的乙炔碳的C-13化学偏移始终通过几ppm在卤素键形成时始终降低,而粘合与碘的乙炔碳的碳含量增加。此外,我们表明这些钴也可以通过机械化球铣削容易地制备,允许基于该卤素键的供体基于CoCrystal的快速​​筛选。

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