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分子“吃豆人”:三氨基和四氨基哌嗪环番的折叠、包合及X射线结构

Molecular Pacman: folding, inclusion, and X-ray structures of tri- and tetraamino piperazine cyclophanes.

作者信息

Raatikainen Kari, Huuskonen Juhani, Kolehmainen Erkki, Rissanen Kari

机构信息

Nanoscience Center, Department of Chemistry, University of Jyväskylä, Survontie 9, Finland.

出版信息

Chemistry. 2008;14(11):3297-305. doi: 10.1002/chem.200701862.

Abstract

Reaction of piperazine and 1,3-bis(bromomethyl)-2-nitrobenzene under high-dilution conditions yields cyclic trimeric trinitro, tetrameric tetranitro, and pentameric pentanitro piperazine cyclophanes. Reduction of the nitro groups with SnCl(2) under acidic conditions produces the corresponding triamino and tetraamino piperazine cyclophanes. The solution studies of both nitro and amino piperazine cyclophanes at 30 degrees C by (1)H NMR spectroscopy shows symmetrical structures owing to the fast conformational exchange, whereas the low temperature studies of the tetraamino piperazine cyclophane reveals interesting dynamic behavior that indicates additional intramolecular interactions. Careful crystallizations of the trimeric trinitro and triamino and the tetrameric tetraamino cyclophanes resulted in crystals suitable for X-ray diffraction studies. In the crystalline state the amino-functionalized cyclophanes manifest an extraordinary circular intramolecular hydrogen-bonding network that leads to a fixed 3D structure. Hydrogen bonding in the triamino trimer leads to orientation of all three of the amino groups on the same side of the macrocycle, namely, the rcc conformation, whereas the tetraamino tetramer folds into a more compact shell-like conformation. During the crystallization process one acetonitrile guest is enclosed into the cavity of the tetraamino cyclophane, which gives a crystalline inclusion complex with remarkable resemblance to the famous Pacman motif. The folding, which mimics the behavior of some cyclic peptides and pyrroles, is induced by intramolecular hydrogen bonding from the amino groups to the tertiary amine groups of the piperazines. The cavity of the tetraamino tetramer is markedly smaller than in the corresponding, but nonfolded, tetranitro tetramer and the guest/host volume ratio (packing coefficient) for the acetonitrile and the cavity is approximately 50 %, which indicates a good size match for acetonitrile inclusion.

摘要

在高稀释条件下,哌嗪与1,3 - 双(溴甲基)-2 - 硝基苯反应生成环状三聚三硝基、四聚四硝基和五聚五硝基哌嗪环番。在酸性条件下用SnCl₂还原硝基基团可得到相应的三氨基和四氨基哌嗪环番。通过¹H NMR光谱对硝基和氨基哌嗪环番在30℃下进行的溶液研究表明,由于快速的构象交换,它们具有对称结构,而对四氨基哌嗪环番的低温研究揭示了有趣的动态行为,这表明存在额外的分子内相互作用。对三聚三硝基和三氨基以及四聚四氨基环番进行仔细结晶,得到了适合X射线衍射研究的晶体。在晶体状态下,氨基官能化的环番表现出非凡的环状分子内氢键网络,从而导致固定的三维结构。三氨基三聚体中的氢键导致所有三个氨基位于大环同一侧,即rcc构象,而四氨基四聚体则折叠成更紧凑的壳状构象。在结晶过程中,一个乙腈客体被包裹在四氨基环番的腔内,形成了一种与著名的吃豆人图案非常相似的晶体包合物。这种折叠模仿了一些环状肽和吡咯的行为,是由氨基与哌嗪叔胺基团之间的分子内氢键诱导的。四氨基四聚体的腔明显小于相应的但未折叠的四硝基四聚体,乙腈与腔的客体/主体体积比(堆积系数)约为50%,这表明乙腈包合的尺寸匹配良好。

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