Crystal structure of bis-(allyl-ammonium) oxalate.

IF 0.9 Acta crystallographica. Section E, Structure reports online Pub Date : 2014-11-05 eCollection Date: 2014-12-01 DOI:10.1107/S1600536814023617
Błażej Dziuk, Bartosz Zarychta, Krzysztof Ejsmont
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Abstract

The title salt, 2C3H8N(+)·C2O4 (2-), crystallized with six independent allyl-ammonium cations and three independent oxalate dianions in the asymmetric unit. One of the oxalate dianions is nearly planar [dihedral angle between CO2 planes = 1.91 (19)°], while the other two are twisted with angles of 11.3 (3) and 26.09 (13)°. One cation has a synperiplanar (cis) conformation with an N-C-C-C torsion angle of 0.9 (3)°, whereas the five remaining cations are characterized by gauche arrangements, with the N-C-C-C torsion angles ranging from 115.9 (12) to 128.8 (3)°. One of the allyl-ammonium cations is positionally disordered (fixed occupancy ratio = 0.45:0.55). In the crystal, the cations and anions are connected by a number of strong N-H⋯O and N-H⋯(O,O) hydrogen bonds, forming layers parallel to (001), with the vinyl groups protruding into the space between the layers.

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草酸二烯丙基铵的晶体结构。
标题盐2C3H8N(+)·C2O4(2-)在不对称单元中与6个独立的烯丙基铵离子和3个独立的草酸根离子结晶。其中一个草酸盐离子呈近平面[CO2平面间的二面角为1.91(19)°],另外两个草酸盐离子呈11.3(3)°和26.09(13)°的扭角。其中一个阳离子具有顺式(顺式)构象,其N-C-C-C扭角为0.9(3)°,而其余五个阳离子具有间扭式构象,其N-C-C-C扭角范围为115.9(12)至128.8(3)°。其中一个烯丙基铵阳离子位置紊乱(固定占有比= 0.45:0.55)。在晶体中,阳离子和阴离子由许多强的N-H⋯O和N-H⋯(O,O)氢键连接,形成平行于(001)的层,乙烯基突出到层之间的空间中。
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期刊介绍: Acta Crystallographica Section E: Structure Reports Online is the IUCr highly popular open-access structural journal. It provides a simple and easily accessible publication mechanism for the growing number of inorganic, metal-organic and organic crystal structure determinations. The electronic submission, validation, refereeing and publication facilities of the journal ensure very rapid and high-quality publication, whilst key indicators and validation reports provide measures of structural reliability. In 2009, the journal published over 4000 structures. The average publication time is less than one month.
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