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Flexible N,N,N-Chelates as Supports for Iron and Cobalt Chloride Complexes; Synthesis, Structures, DFT calculations and Ethylene Oligomerisation Studies

机译:灵活的N,N,N螯合物作为氯化铁和氯化钴配合物的载体;合成,结构,DFT计算和乙烯低聚研究

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摘要

The aryl-substituted N-picolylethylenediamine and diethylenetriamine ligands, (ArNHCH[subscript 2]CH[subscript 2]){(2-C[subscript 5]H[subscript 4]N)CH[subscript 2]}NH and (ArNHCH[subscript 2]CH[subscript 2])[subscript 2]NH (Ar = 2,6-Me[subscript 2]C[subscript 6]H[subscript 3], 2,4,6-Me[subscript 3]C[subscript 6]H[subscript 2]), have been prepared by employing palladium-catalysed N–C(aryl) coupling reactions of the corresponding primary amines with aryl bromide. Treatment of MCl[subscript 2] with (ArNHCH[subscript 2]CH[subscript 2]){(2-C[subscript 5]H[subscript 4]N)CH[subscript 2]}NH affords [{(ArNHCH[subscript 2]CH[subscript 2])((2-C[subscript 5]H[subscript 4]N)CH[subscript 2])NH}CoCl[subscript 2]] (Ar = 2,6-Me[subscript 2]C[subscript 6]H[subscript 3]1a; 2,4,6-Me[subscript 3]C[subscript 6]H[subscript 2]1b) and [{(ArNHCH[subscript 2]CH[subscript 2])((2-C[subscript 5]H[subscript 4]N)CH[subscript 2])NH}FeCl[subscript 2]][subscript n] (n = 1, Ar = 2,6-Me[subscript 2]C[subscript 6]H[subscript 3]2a; n = 2, 2,4,6-Me[subscript 3]C[subscript 6]H[subscript 2]2b) in high yield. The X-ray structures of 1a and 1b are isostructural and reveal the metal centres to adopt distorted trigonal bipyramidal geometries with the N,N,N-chelates adopting fac-structures. A facial coordination mode of the ligand is also observed in bimetallic 2b, however, in 2a the N,N,N-chelate adopts a mer-configuration with the metal centre adopting a geometry best described as square pyramidal. Solution studies indicate that mer–fac isomerisation is a facile process for these systems at room temperature. Quantum mechanical calculations (DFT) have been performed on 1a and 2a, in which the ligands employed are identical, and show the fac- to be marginally more stable than the mer-configuration for cobalt (1a) while for iron (2a) the converse is evident. Reaction of (ArNHCH[subscript 2]CH[subscript 2])[subscript 2]NH with CoCl[subscript 2] gave the five-coordinate complexes [{(ArNHCH[subscript 2]CH[subscript 2])[subscript 2]NH}CoCl[subscript 2]] (Ar = 2,6-Me[subscript 2]C[subscript 6]H[subscript 3]3a, 2,4,6-Me[subscript 3]C[subscript 6]H[subscript 2]3b), in which the ligand adopts a mer-configuration; no reaction occurred with FeCl[subscript 2]. All complexes 1–3 act as modest ethylene oligomerisation catalysts on activation with excess methylaluminoxane (MAO); the iron systems giving linear α-olefins while the cobalt systems give mixtures of linear and branched products.
机译:芳基取代的N-吡啶甲基乙二胺和二亚乙基三胺配体(ArNHCH [下标2] CH [下标2]){(2-C [下标5] H [下标4] N)CH [下标2]} NH和(ArNHCH [下标2] CH [下标2])[下标2] NH(Ar = 2,6-Me [下标2] C [下标6] H [下标3],2,4,6-Me [下标3] C [下标6] H [下标2]),是通过相应伯胺与溴化芳基的钯催化的N-C(芳基)偶联反应制备的。用(ArNHCH [下标2] CH [下标2]){(2-C [下标5] H [下标4] N)CH [下标2]} NH处理MCl [下标2]产生[{(ArNHCH [下标2] CH [下标2])((2-C [下标5] H [下标4] N)CH [下标2])NH} CoCl [下标2]](Ar = 2,6-Me [下标2] C [下标6] H [下标3] 1a; 2,4,6-Me [下标3] C [下标6] H [下标2] 1b)和[{(ArNHCH [下标2] CH [下标2]) ((2-C [下标5] H [下标4] N)CH [下标2])NH} FeCl [下标2]] [下标n](n = 1,Ar = 2,6-Me [下标2] C [下标6] H [下标3] 2a; n = 2,2,4,6-Me [下标3] C [下标6] H [下标2] 2b)高产率。 1a和1b的X射线结构是同构的,揭示出金属中心采用扭曲的三角双锥体几何结构,N,N,N螯合物采用fac结构。在双金属2b中也观察到配体的面部配位模式,但是,在2a中,N,N,N螯合物采用mer-构型,金属中心采用最能描述为四棱锥的几何形状。溶液研究表明,在室温下,mer-fac异构化是这些系统的简便方法。在1a和2a上进行了量子力学计算(DFT),其中所用的配体是相同的,并且表明钴(1a)的正面结构比mer-构型稍微稳定,而铁(2a)的正面构型相反显而易见。 (ArNHCH [下标2] CH [下标2])[下标2] NH与CoCl [下标2]的反应得到五配位络合物[{(ArNHCH [下标2] CH [下标2])[下标2] NH } CoCl [下标2]](Ar = 2,6-Me [下标2] C [下标6] H [下标3] 3a,2,4,6-Me [下标3] C [下标6] H [下标2] 3b),其中配体采用mer-构型; FeCl [下标2]未发生反应。所有的配合物1-3在用过量的甲基铝氧烷(MAO)活化时均充当适度的乙烯低聚催化剂;铁系统生成线性α-烯烃,而钴系统生成线性和支链产物的混合物。

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