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在铁双(亚胺吡啶)配合物还原过程中双氮活化的多种途径。

Multiple pathways for dinitrogen activation during the reduction of an Fe Bis(iminepyridine) complex.

作者信息

Scott Jennifer, Vidyaratne Indu, Korobkov Ilia, Gambarotta Sandro, Budzelaar Peter H M

机构信息

Department of Chemistry, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

出版信息

Inorg Chem. 2008 Feb 4;47(3):896-911. doi: 10.1021/ic701643d. Epub 2008 Jan 4.

Abstract

Reduction of the bis(iminopyridine) FeCl(2) complex {2,6-2,6-(iPr)(2)PhN=C(CH(3))(C(5)H(3)N)}FeCl(2) using NaH has led to the formation of a surprising variety of structures depending on the amount of reductant. Some of the species reported in this work were isolated from the same reaction mixture, and their structures suggest the presence of multiple pathways for dinitrogen activation. The reaction with 3 equiv of NaH afforded {2-[2,6-(iPr)(2)PhN=C(CH(3))]-6-2,6-(iPr)(20PhN-C=CH(2)}Fe(micro,eta(2)-N(2))Na (THF) (1) containing one N(2) unit terminally bound to Fe and side-on attached to the Na atom. In the process, one of the two imine methyl groups has been deprotonated, transforming the neutral ligand into the corresponding monoanionic version. When 4 equiv were employed, two other dinitrogen complexes {2-[2,6-(iPr)(2)PhN=C(CH(3))]-6-2,6-(iPr)(2)PhN-C=CH(2)}Fe(micro-N2)Na(Et(2)O)(3) (2) and {2,6-2,6-(iPr)(2)PhN=C(CH(3))(C(5)H(3)N)}Fe(micro-N(2))Na[Na(THF)(2)] (3) were obtained from the same reaction mixture. Complex 2 is chemically equivalent to 1, the different degree of solvation of the alkali cation being the factor apparently responsible for the sigma-bonding mode of ligation of the N(2) unit to Na, versus the pi-bonding mode featured in 1. In complex 3, the ligand remains neutral but a larger extent of reduction has been obtained, as indicated by the presence of two Na atoms in the structure. A further increase in the amount of reductant (12 equiv) afforded a mixture of {2-[2,6-(iPr)(2)PhN=C(CH(3))]-6-2,6-(iPr)(2)PhN-C=CH(2)}Fe-N(2) (4) and {2,6-2,6-(iPr)(2)PhN=C(CH(3))(C(5)H(3)N)}Fe-N(2)(micro-Na) Na(THF)(2) (5) which were isolated by fractional crystallization. Complex 4, also containing a terminally bonded N(2) unit and a deprotonated anionic ligand bearing no Na cations, appears to be the precursor of 1. The apparent contradiction that excess NaH is required for its successful isolation (4 is the least reduced complex of this series) is most likely explained by the formation of the partner product 5, which may tentatively be regarded as the result of aggregation between 1 and 3 (with the ligand system in its neutral form). Finally, reduction carried out in the presence of additional free ligand afforded {2,6-2,6-(iPr)(2)PhN=C(CH(3))(C(5)H(3)N)}Fe(eta(1)-N(2)){2,6-2,6-(iPr)(2)PhN=C(CH(3))] (6) and {2,6-2,6-(iPr)(2)PhN=C(CH(3))(C(5)H(3)N)}Fe{2,6-2,6-(iPr)(2)PhN=C(CH(3))(NC(5)H(2))}Na(THF)(2)) (7). In both species, the Fe metal is bonded to the pyridine ring para position of an additional (L)Na unit. Complex 6 chemically differs from 7 (the major component) only for the presence of an end-on coordinated N(2).

摘要

使用NaH还原双(亚氨基吡啶)二氯化铁配合物{2,6-[2,6-(异丙基)₂苯基-N=C(CH₃)]₂(C₅H₃N)}FeCl₂,根据还原剂的用量会生成令人惊讶的多种结构。本工作中报道的一些物种是从同一反应混合物中分离出来的,它们的结构表明存在多种双氮活化途径。与3当量的NaH反应得到{2-[2,6-(异丙基)₂苯基-N=C(CH₃)]-6-2,6-(异丙基)₂苯基-N-C=CH₂}Fe(μ,η²-N₂)Na(THF)(1),其中一个N₂单元末端与Fe结合并以边对边的方式与Na原子相连。在此过程中,两个亚胺甲基中的一个被去质子化,使中性配体转化为相应的单阴离子形式。当使用4当量时,从同一反应混合物中得到另外两种双氮配合物{2-[2,6-(异丙基)₂苯基-N=C(CH₃)]-6-2,6-(异丙基)₂苯基-N-C=CH₂}Fe(μ-N₂)Na(Et₂O)₃(2)和{2,6-[2,6-(异丙基)₂苯基-N=C(CH₃)]₂(C₅H₃N)}Fe(μ-N₂)Na[Na(THF)₂](3)。配合物2在化学上与1等效,碱金属阳离子不同程度的溶剂化显然是导致N₂单元与Na的σ键配位模式不同的因素,与1中的π键配位模式不同。在配合物3中,配体保持中性,但还原程度更大,结构中存在两个Na原子表明了这一点。还原剂用量进一步增加(12当量)得到{2-[2,6-(异丙基)₂苯基-N=C(CH₃)]-6-2,6-(异丙基)₂苯基-N-C=CH₂}Fe-N₂(4)和[{2,6-[2,6-(异丙基)₂苯基-N=C(CH₃)]₂(C₅H₃N)}Fe-N₂]₂(μ-Na)[Na(THF)₂]₂(5)的混合物,通过分步结晶分离得到。配合物4也含有一个末端结合的N₂单元和一个不带Na阳离子的去质子化阴离子配体,似乎是1的前体。成功分离它需要过量NaH这一明显矛盾现象,很可能是由于生成了伴生产物5,可以初步认为这是1和3(配体体系为中性形式)之间聚集的结果。最后,在额外游离配体存在下进行还原得到{2,6-[2,6-(异丙基)₂苯基-N=C(CH₃)]₂(C₅H₃N)}Fe(η¹-N₂){2,6-[2,6-(异丙基)₂苯基-N=C(CH₃)]₂(NC₅H₂)}[Na(THF)₂](6)和{2,6-[2,6-(异丙基)₂苯基-N=C(CH₃)]₂(C₅H₃N)}Fe{2,6-[2,6-(异丙基)₂苯基-N=C(CH₃)]₂(NC₅H₂)}Na(THF)₂(7)。在这两种物种中,Fe金属与另一个(L)Na单元的吡啶环对位相连。配合物6与7(主要成分)在化学上的不同仅在于存在一个端对端配位的N₂。

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