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首页> 外文期刊>Journal of Chemical Crystallography >Conformational variability exhibited by mellitic acid anions (MA? n ) with organic amine cations: Structures with an abundance of NH ?s OC hydrogen bonds and a paucity of hydrogen bonds
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Conformational variability exhibited by mellitic acid anions (MA? n ) with organic amine cations: Structures with an abundance of NH ?s OC hydrogen bonds and a paucity of hydrogen bonds

机译:偏苯三酸阴离子(MA? n )与有机胺阳离子的构象变异性:NH?s OC氢键丰富且氢键少的结构

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摘要

Benzenehexacarboxylic acid (mellitic acid) is an ideal substrate for the study of radially arranged ionic interactions with organic bases. Earlier work has shown that the net charge in MA (−4, −3, or −2) influences its assembly, respectively, either as ribbons or sheets. In the former case the cations intersperse the ribbons forming a tight network. In the MA sheets from the latter, the cations are arranged in orthogonal stacks. In the MA-phenanthroline complex such stacks are arranged exactly parallel resulting in significant π–π interactions. The present work relates to the modification of the phenanthroline motif to flexible structures. The reported ability of 2,3-bis-(2′-pyridyl) pyrazine (P2), prepared from 2,2′-pyridyl by reaction with ethylenediamine (EDA) followed by dehydrogenation of the resulting 2,3-bis-(2′-pyridyl)-5,6-dihydropyrazine, to form helical structures made it an obvious choice for complexation studies with MA. These resulted not only in the formation of the desired 7 MAP2 complex but also, surprisingly, with the dihydroprecursor complex with EDA 3 (MAEDA), a compound that eluded direct preparation with MA and EDA. The crystal structure of MAEDA reports the first complex of MA where MA−5 ions are encountered. The 15 hydrogen bonds, three for each N, result in hard packing. The complex with P2 7 (MAP2) showed the common features of MA−2 sheets. Unlike phenanthroline, the nonplanar disposition of the pyridine rings made it possible for both pyridine protons to be available for salt formation, resulting in the arrangement of the cations in layers interposed between the sheets of MA−2 ions. The pyrazine ring does not participate in hydrogen bonding or stacking in the crystal.
机译:苯六甲酸(苯六甲酸)是研究与有机碱径向排列的离子相互作用的理想底物。较早的工作表明,MA中的净电荷(-4,-3或-2)分别以带状或片状影响其组装。在前一种情况下,阳离子散布在带上,形成紧密的网络。在来自后者的MA片中,阳离子以正交堆叠的形式排列。在MA-菲咯啉络合物中,这种叠层正好平行排列,从而导致明显的π-π相互作用。本工作涉及将菲咯啉基序修饰为柔性结构。报告的2,3-双-(2'-吡啶基)吡嗪(P2)的能力是由2,2'-吡啶基与乙二胺(EDA)反应制得,然后将所得的2,3-双-(2 (-吡啶基)-5,6-二氢吡嗪形成螺旋结构使其成为与MA络合研究的明显选择。这些不仅导致所需的7 MAP2配合物的形成,而且还令人惊讶地与具有EDA 3的二氢前体配合物(MAEDA)形成了混合物,该化合物无法与MA和EDA直接制备。 MAEDA的晶体结构报告了MA的第一个络合物,其中遇到了MA-5 离子。 15个氢键,每个N 3个,导致硬堆积。具有P2 7的配合物(MAP2)显示了MA-2 纸的共同特征。与菲咯啉不同,吡啶环的非平面布置使得两个吡啶质子都可用于形成盐,从而导致阳离子排列在插入MA-2离子片之间的层中。吡嗪环不参与氢键或晶体中的堆积。

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