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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Theoretical Studies of Inorganic and Organometallic Reaction Mechanisms.16.Oxidative Promotion of the Migratory Insertion of Carbon Monoxide in Cyclopentadienylmethyldicarbonyliron (II)
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Theoretical Studies of Inorganic and Organometallic Reaction Mechanisms.16.Oxidative Promotion of the Migratory Insertion of Carbon Monoxide in Cyclopentadienylmethyldicarbonyliron (II)

机译:无机和有机金属反应机理的理论研究.16。一氧化碳在环戊二烯基甲基二羰基铁(II)中的迁移促进

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Density functional methodology has been used to study the mechanistic details of the migratory insertion of CO into the transition metal-alkyl #sigma# bond of the Fe cyclopentadienyl complexes CpFe(CO)_2CH_3 and [CpFe(CO)_2CH_3]~+ in the presence of phosphine,PH_3.Geometries,energies,and vibrational frequencies of reactants,molecular complexes,transition states,intermediates,and products are determined.Methyl migration with little PH_3 stabilizes the metastable interrmediates [CpFe(CO)(COCH_3)--PH_3]~(0/+) and the products [CpFe(CO)(COCH_3)(PH_3)]~(0/+).The calculated activation energies of the rate-determining steps are 17.8 and 7.5 kcal/mol for the neutral and cation reaction,respectively.The significant difference in these barries is not due to the oxidatively promoted reaction utilizing a significantly different mechanism,but is interpreted in terms of methyl migration in the cation as having more radical character induced by the unpaired electron on Fe.For the reverse of the neutral migratory-insertion reaction,the overall activation energy is 24.3 kcal/mol.Thus,as is observed,the neutral reaction will be reversible only at higher temperatures.The overall exothermicities are -4.6 and -29.4 kcal/mol for the neutral and the cation reaction,respectively.The #eta#~2-acyl intermediates {CpFe(CO)(COCH_3)]~(0/+) are more stable by 6.1 and 11.1 kcal/mol than the #eta#~2-methyl (agostic) intermediates,respectively.However,these #eta#~2-acyl intermediates are not involved in the favored pathway of either reaction due to higher barriers for their formation,Natural bond orbiatla analyses for the molecular complexes [CpFe(CO)_2(CH_3)--PH_3]~(0/+) show a weak donor-acceptor interaction,where the phosphine behaves as acceqtor in the netural complex but as a donor in the cation.
机译:密度泛函方法已用于研究在存在条件下将CO迁移插入Fe环戊二烯基配合物CpFe(CO)_2CH_3和[CpFe(CO)_2CH_3]〜+的过渡金属-烷基#sigma#键中的机理细节确定膦,PH_3的大小,反应物的几何形状,能量和振动频率,分子配合物,过渡态,中间体和产物。PH_3少的甲基迁移稳定了亚稳中间体[CpFe(CO)(COCH_3)-PH_3]〜 (0 / +)和产物[CpFe(CO)(COCH_3)(PH_3)]〜(0 / +)。对于中性和阳离子反应,速率确定步骤的计算活化能为17.8和7.5 kcal / mol。这些屏障的显着差异不是由于利用显着不同的机理进行的氧化促进反应,而是根据阳离子中的甲基迁移解释为由于Fe上未成对电子诱导而具有更多的自由基特征。中性的迁移插入反应的总活化能为24.3 kcal / mol。因此,观察到,中性反应仅在较高温度下才可逆。中性和高温的总放热分别为-4.6和-29.4 kcal / mol。 #eta#〜2-酰基中间体{CpFe(CO)(COCH_3)]〜(0 / +)比#eta#〜2-甲基(声光)稳定6.1和11.1 kcal / mol )中间体。但是,这些#eta#〜2-酰基中间体由于形成障碍较高而未参与任何一种反应的偏爱途径,分子复合物[CpFe(CO)_2(CH_3)的自然键Orbiatla分析)-PH_3]〜(0 / +)显示出较弱的供体-受体相互作用,其中膦在神经络合物中起受体的作用,而在阳离子中起供体的作用。

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