Reactivity of a Cationic (C5Me5)IrIII-Cyclometalated Phosphine Complex with Alkynes
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https://figshare.com/articles/dataset/Reactivity_of_a_Cationic_C_sub_5_sub_Me_sub_5_sub_Ir_sup_III_sup_Cyclometalated_Phosphine_Complex_with_Alkynes/2223454
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The electrophilic cationic complex [(η5-C5Me5)Ir(C∧P)]+, which contains a metalated phosphine derived from PMe(Xyl)2 (Xyl = 2,6-Me2C6H3), reacts at −60 °C with the alkynes HCCH, PhCCH, and PhCCMe, with formation of the corresponding π adducts [(η5-C5Me5)Ir(C∧P)(η2-alkyne)]+. Thermal activation of these complexes leads to products that result from the C–C coupling of the alkyne and the σ Ir–C bond of the metalated phosphine, whose nature depends markedly upon the alkyne involved. Thus, for HCCH the carbon–carbon bond -forming reaction leads to an iridium-bound alkene moiety as the thermodynamic product, whereas the analogous complexes derived from the bulkier PhCCH and PhCCMe alkynes undergo further transformation into allylic structures. Mechanistic studies supported by the use of PhCCD demonstrate the implication of an undetected vinylidene structure, IrCC(H)Ph, in the key carbon–carbon bond-forming step of the PhCCH reaction system, whereas for the internal alkyne PhCCMe a migratory insertion mechanism is operative. However, no clear distinction between these two routes can be made for the C–C bond-forming reaction for which HCCH is responsible.
创建时间:
2016-02-16



