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Kinetics and Mechanism of Indene C–H Bond Activation by [(COD)Ir(μ2‑OH)]2

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Figshare2016-02-19 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Kinetics_and_Mechanism_of_Indene_C_H_Bond_Activation_by_COD_Ir_sub_2_sub_OH_sub_2_sub_/2407315
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The hydroxy-bridged dimer [(COD)­Ir­(μ2-OH)]2 (COD = 1,5-cyclooctadiene) cleanly cleaves C–H bonds in indene and cyclopentadiene to produce (COD)­Ir­(η3-indenyl) and (COD)­Ir­(η5-C5H5), respectively. The kinetics of the formation of (COD)­Ir­(η3-indenyl) are consistent with a mechanism that involves coordination of indene to [(COD)­Ir­(μ2-OH)]2 followed by rate-determining C–H activation from the iridium dimer–indene unit. Transition-state analysis of the Ir and Rh hydroxy dimers indicates that the C–H activation proceeds through a direct deprotonation of indene by the M–OH unit rather than a stepwise oxidative addition/reductive elimination mechanism. The crystal structure of [(COD)­Ir]5(μ4-O)­(μ3-O)­(μ2-OH), a dehydration product of [(COD)­Ir­(μ2-OH)]2, is presented.
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2016-02-19
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