首页> 外文期刊>Acta crystallographica. Section C, Structural chemistry. >Hydrogen bonding and π–π interactions in the cocrystal salt [Fe(bpe) 2 2 (H 2 2 O) 4 4 ](TCEP) 2 2 ·2(bpe) [bpe is trans trans ‐1,2‐bis(pyridin‐4‐yl)ethene and TCEP is 1,1,3,3‐tetracyano‐2‐ethoxypropenide]
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Hydrogen bonding and π–π interactions in the cocrystal salt [Fe(bpe) 2 2 (H 2 2 O) 4 4 ](TCEP) 2 2 ·2(bpe) [bpe is trans trans ‐1,2‐bis(pyridin‐4‐yl)ethene and TCEP is 1,1,3,3‐tetracyano‐2‐ethoxypropenide]

机译:氢键和π-π相互作用在Cocrystal盐[Fe(BPE)2 2(H 2 O)4 4](TCEP)2 2·2(BPE)[BPE是反式反式-1,2-双(Pyridin -4-基)乙烯和TCEP是1,1,3,3-四环酮-2-乙氧基丙烯酯]

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摘要

The cocrystal salt tetraaquabis[ trans ‐1,2‐bis(pyridin‐4‐yl)ethene‐κ N ]iron(II) bis(1,1,3,3‐tetracyano‐2‐ethoxypropenide)– trans ‐1,2‐bis(pyridin‐4‐yl)ethene (1/2), [Fe(C 12 H 10 N 2 ) 2 (H 2 O) 4 ](C 9 H 5 N 4 O) 2 ·2C 12 H 10 N 2 , is a rare example of a mononuclear Fe II compound with trans ‐1,2‐bis(pyridin‐4‐yl)ethane (bpe) ligands. The complex cation resides on a crystallographically imposed inversion center and exhibits a tetragonally distorted octahedral coordination geometry. Both the symmetry‐independent bpe ligand and the cocrystallized bpe molecule are essentially planar. The 1,1,3,3‐tetracyano‐2‐ethoxypropenide counter‐ion is nonplanar and the bond lengths are consistant with significant electron delocalization. The extended structure exhibits an extensive O—H…N hydrogen‐bonding network with layers of complex cations joined by the cocrystallized bpe. Both the coordinated and the cocrystallized bpe are involved in π–π interactions. Hirshfeld and fingerprint plots reveal the important intermolecular interactions. Density functional theory was used to estimate the strengths of the hydrogen‐bonding and π–π interactions, and suggest that the O—H…N hydrogen bonds enhance the strength of the π‐interactions by increasing the polarization of the pyridine rings.
机译:Cocrystal盐Tetraaquabis [Trans -1,2-双(吡啶-4-基)乙烯-κN]铁(II)双(1,1,3,3-四环醇-2-乙氧基丙烯酸苯丙胺) - Trans -1,2 -bis(吡啶-4-基)乙烯(1/2),[Fe(C 12 H 10 N 2)2(H 2 O)4](C 9 H 5 N 4 O)2·2C 12 H 10 N如图2所示,是用反式-1,2-双(吡啶-4-基)乙烷(BPE)配体的单核Fe化合物的罕见实例。复杂的阳离子位于晶体上施加的倒置中心并表现出四方扭曲的八面体配位几何形状。对称无关的BPE配体和共聚体BPE分子都基本上是平面的。 1,1,3,3-四环醇-2-乙氧基丙烯酸酮反离子是非平面的,并且粘合长度与显着的电子临床化是一致的。扩展结构具有广泛的O-H ... N氢键网络,其具有由CoCryalized BPE连接的复杂阳离子层。协调和共聚的BPE都涉及π-π相互作用。 Hirshfeld和指纹情节揭示了重要的分子间相互作用。密度函数理论用于估计氢键和π-π相互作用的强度,并表明O-H ... N氢键通过增加吡啶环的偏振来增强π相互作用的强度。

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