首页> 外文期刊>Acta crystallographica. Section C, Structural chemistry. >Hydrogen bonding in 4-nitrobenzene-1,2-diamine and two hydrohalide salts
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Hydrogen bonding in 4-nitrobenzene-1,2-diamine and two hydrohalide salts

机译:4-硝基苯-1,2-二胺和两种氢卤化物盐中的氢键

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The structures of 4-nitrobenzene-1,2-diamine [C6H 7N3O2, (I)], 2-amino-5-nitroanilinium chloride [C6H8N3O2 + Cl -, (II)] and 2-amino-5-nitroanilinium bromide monohydrate [C 6H8N3O2 + Br- H2O, (III)] are reported and their hydrogen-bonded structures described. The amine group para to the nitro group in (I) adopts an approximately planar geometry, whereas the meta amine group is decidedly pyramidal. In the hydrogen halide salts (II) and (III), the amine group meta to the nitro group is protonated. Compound (I) displays a pleated-sheet hydrogen-bonded two-dimensional structure with R2 2(14) and R4 4(20) rings. The sheets are joined by additional hydrogen bonds, resulting in a three-dimensional extended structure. Hydrohalide salt (II) has two formula units in the asymmetric unit that are related by a pseudo-inversion center. The dominant hydrogen-bonding interactions involve the chloride ion and result in R4 2(8) rings linked to form a ladder-chain structure. The chains are joined by N-H?Cl and N-H?O hydrogen bonds to form sheets parallel to (010). In hydrated hydrohalide salt (III), bromide ions are hydrogen bonded to amine and ammonium groups to form R 42(8) rings. The water behaves as a double donor/single acceptor and, along with the bromide anions, forms hydrogen bonds involving the nitro, amine, and ammonium groups. The result is sheets parallel to (001) composed of alternating R5 5(15) and R6 4(24) rings. Ammonium N-H?Br interactions join the sheets to form a three-dimensional extended structure. Energy-minimized structures obtained using DFT and MP2 calculations are consistent with the solid-state structures. Consistent with (II) and (III), calculations show that protonation of the amine group meta to the nitro group results in a structure that is about 1.5 kJ mol-1 more stable than that obtained by protonation of the para-amine group. DFT calculations on single molecules and hydrogen-bonded pairs of molecules based on structural results obtained for (I) and for 3-nitrobenzene-1,2-diamine, (IV) [Betz & Gerber (2011). Acta Cryst. E67, o1359] were used to estimate the strength of the N-H?O(nitro) interactions for three observed motifs. The hydrogen-bonding interaction between the pairs of molecules examined was found to correspond to 20-30 kJ mol -1.
机译:4-硝基苯-1,2-二胺[C6H 7N3O2,(I)],2-氨基-5-硝基苯胺氯化物[C6H8N3O2 + Cl-,(II)]和2-氨基-5-硝基苯胺溴化物一水合物的结构[ [C 6 H 8 N 3 O 2 + Br-H 2 O,(III)]被报道,并描述了它们的氢键结构。 (I)中与硝基相对的胺基具有近似平面的几何形状,而间位胺基显然是金字塔形的。在卤化氢盐(II)和(III)中,与硝基间位的胺基被质子化。化合物(I)显示具有R 2 2(14)和R 4 4(20)环的折叠的片状氢键键二维结构。片材通过额外的氢键连接在一起,形成三维延伸结构。氢卤酸盐(II)在不对称单元中具有两个通过假反演中心关联的式单元。占优势的氢键相互作用涉及氯离子,并导致R4 2(8)环连接起来形成梯形链结构。链通过N-H2Cl和N-H2O氢键连接形成平行于(010)的片。在水合氢卤化物盐(III)中,溴离子与氢原子键合到胺和铵基上,形成R 42(8)环。水表现为双供体/单受体,并与溴化物阴离子形成氢键,涉及硝基,胺和铵基。结果是平行于(001)的薄片由交替的R5 5(15)和R6 4(24)环组成。铵N-H2Br相互作用将薄片连接起来,形成三维延伸结构。使用DFT和MP2计算获得的能量最小的结构与固态结构一致。与(II)和(III)一致,计算表明胺基的质子化成硝基导致的结构比对氨基胺的质子化获得的结构稳定约1.5kJ mol-1。基于(I)和3-硝基苯-1,2-二胺(IV)的结构结果,对单分子和氢键对分子进行DFT计算[Betz&Gerber(2011)。 Acta Cryst。 [E67,o1359]用于估计三个观察到的基序的N-H2O(硝基)相互作用的强度。发现所检查的分子对之间的氢键相互作用对应于20-30kJ mol -1。

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