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首页> 外文期刊>Journal of Organometallic Chemistry >Binuclear heptalene iron carbonyl complexes: Comparison with related azulene and pentalene complexes
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Binuclear heptalene iron carbonyl complexes: Comparison with related azulene and pentalene complexes

机译:双核庚烯羰基铁配合物:与相关的z烯和戊烯配合物的比较

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摘要

Reactions of heptalene and its 1,6-dimethyl derivatives with iron carbonyls have been reported to give structurally characterized cis and trans stereoisomers of the bis(tetrahapto)diene complex (η ~4, η ~4-C _(12)H _(10))Fe _2(CO) _6 in which the uncomplexed CC double bonds form a transoid 1,3-diene unit including the C-C double bond shared by the two heptalene rings. These two structures were found by density functional theory to have essentially identical energies and to lie in energy below any other of the four possible (η ~4, η ~4-C _(12)H _(10))Fe _2(CO) _6 isomers. The lowest energy structure for C _(12)H _(10)Fe _2(CO) _5 has a carbonyl-bridged Fe-Fe formal single bond of length ~2.79 ?. The heptalene ligand in this structure is bonded to one iron atom as a tetrahapto cisoid 1,3-diene unit and to the other iron atom as a tetrahapto Y-shaped trimethylenemethane unit leaving an uncomplexed cisoid 1,3-diene unit. Four higher energy C _(12)H _(10)Fe _2(CO) _5 structures are found without iron-iron bonds and with one heptalene ring bonded to an iron atom as a hexahapto ligand and to the other iron atom as a tetrahapto ligand leaving one uncomplexed C=C bond. In contrast to the related experimentally known (pentalene)Fe _2(CO) _5 and (azulene)Fe _2(CO) _5, these (heptalene)Fe _2(CO) _5 derivatives are predicted to have only marginal stability with respect to disproportionation into (heptalene)Fe _2(CO) _6 ~+ (heptalene)Fe _2(CO) _4. This may account for the failure to isolate (heptalene)Fe _2(CO) _5 from reactions of heptalene with iron carbonyls. The low energy structures for the unsaturated (heptalene)Fe _2(CO) _n (n = 4, 3, 2) provide examples of triplet and even quintet spin states (the latter for n = 2) as well as variable hapticities of the heptalene rings ranging from trihapto to heptahapto.
机译:据报道,庚烯及其1,6-二甲基衍生物与羰基铁的反应可形成双(四氢)二烯配合物(η〜4,η〜4-C _(12)H _( 10))Fe _2(CO)_6,其中未络合的CC双键形成包括两个庚烯环共享的CC双键的反式1,3-二烯单元。通过密度泛函理论发现这两个结构具有基本相同的能量,并且其能量低于四种可能的(η〜4,η〜4-C _(12)H _(10))Fe _2(CO )_6个异构体。 C _(12)H _(10)Fe _2(CO)_5的最低能级结构具有羰基桥联的Fe-Fe形式单键,其长度约为〜2.79?。该结构中的庚烯配体与一个铁原子键合为四半顺式1,3-二烯单元,另一个铁原子键合为四触角Y-型三亚甲基甲烷单元,从而留下未络合的顺式1,3-二烯单元。发现四个更高能级的C _(12)H _(10)Fe _2(CO)_5结构没有铁-铁键,一个庚烯环与一个铁原子作为六键配体结合,而另一个庚环与另一个铁原子作为四键结合。配体留下一个不复杂的C = C键。与相关的实验上已知的(戊烯)Fe _2(CO)_5和(azulene)Fe _2(CO)_5相比,这些(庚烯)Fe _2(CO)_5衍生物被预测在歧化成(庚烯)Fe _2(CO)_6〜+(庚烯)Fe _2(CO)_4。这可能是由于未能从庚烯与羰基铁的反应中分离出(庚烯)Fe _2(CO)_5而造成的。不饱和(庚烯)Fe _2(CO)_n(n = 4,3,2)的低能结构提供了三重态甚至五重态自旋态(后者为n = 2)以及庚烯的可变触觉的示例戒指的范围从Trihapto到Heptahapto。

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