首页> 外文期刊>Journal of chemical crystallography >A new class of flexible energetic salts, part 2: The crystal structures of the cubane-1,4-diammonium dinitramide and cubane-1,2,4,7-tetraammonium dinitramide salts
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A new class of flexible energetic salts, part 2: The crystal structures of the cubane-1,4-diammonium dinitramide and cubane-1,2,4,7-tetraammonium dinitramide salts

机译:一类新的柔性高能盐,第2部分:古巴-1,4-二铵二硝酰胺和古巴-1,2,4,7-四铵二硝酰胺盐的晶体结构

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The crystal structures of cubane-1,4-diammonium dinitramide, 1, and cubane-1,2,4,7-tetraammonium dinitramide, 2, have been determined. 1 crystallizes in the space group P2(1)/c with cell dimensions a = 6.018(2), b = 11.642(3), c = 9.754(3) Angstrom, beta = 107.24(2), while 2 crystallizes in the space group P2(1)/c with cell dimensions a = 9.401(4), b = 9.603(3), c = 12.603(4) Angstrom, beta 111.08(3). In these structures the ammonium substituents are symmetrically attached with respect to the cubane skeleton and have neither low lying empty orbitals nor available lone pairs of electrons thus they have a minimal effect on the metrical parameters of the cubane skeleton. All C-C bond lengths are close to the overall average C-C bond length for all reported cubanes of 1.559 Angstrom. The conformations adopted by the dinitramide ions in both structures are quite different, with the bend, twist, and torsion angles for the dinitramide ion in 1 being significantly larger than those found for the dinitramide ions in 2, due to the different types of hydrogen bonding found in the two structures. In 2, the conformation adopted by the adjacent ammonium ions allows two of the three protons from each ammonium cation to form hydrogen bonds in such a manner that they span either the syn or the anti oxygen atoms of a single dinitramide anion. The dinitramide anion is thus constrained by these interactions and is less free to twist and bend. These results provide further confirmation that the metrical parameters of both the cubane and dinitramide moieties are flexible and reflect their local environment. [References: 40]
机译:已经确定了古巴-1,4-二氮化二酰胺1和古巴1,2,4,7-四铵二氮化酰胺2的晶体结构。 1个在单元格尺寸为a = 6.018(2),b = 11.642(3),c = 9.754(3)埃,β= 107.24(2)的空间组P2(1)/ c中结晶,而2在空间中结晶。单元尺寸为a = 9.401(4),b = 9.603(3),c = 12.603(4)埃,β111.08(3)的P2(1)/ c组。在这些结构中,铵取代基相对于古巴骨架对称连接,既没有低空的空轨道,也没有可用的电子对,因此它们对古巴骨架的度量参数影响很小。所有报道的古巴1.559埃的所有C-C键长度都接近其总体平均C-C键长度。在两种结构中,二硝酰胺离子所采用的构型是完全不同的,由于氢键的类型不同,1中的二硝酰胺离子的弯曲,扭曲和扭转角明显大于2中的二硝酰胺离子的弯曲,扭曲和扭转角。在两个结构中发现。在图2中,相邻铵离子采用的构象允许每个铵阳离子中的三个质子中的两个以形成氢键的方式形成氢键,以使它们跨越单个二硝酰胺阴离子的正或反氧原子。因此,二硝酰胺阴离子受到这些相互作用的约束,并且不易扭曲和弯曲。这些结果进一步证实了古巴和二硝酰胺部分的度量参数是灵活的,并反映了它们的局部环境。 [参考:40]

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