Combined computational and experimental study of substituent effects on the thermodynamics of H2, CO, arene, and alkane addition to iridium

被引:127
作者
Krogh-Jespersen, K [1 ]
Czerw, M [1 ]
Zhu, KM [1 ]
Singh, B [1 ]
Kanzelberger, M [1 ]
Darji, N [1 ]
Achord, PD [1 ]
Renkema, KB [1 ]
Goldman, AS [1 ]
机构
[1] Rutgers State Univ, Dept Chem & Chem Biol, New Brunswick, NJ 08903 USA
关键词
D O I
10.1021/ja010547t
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The thermodynamics of small-molecule (H-2, arene, alkane, and CO) addition to pincer-ligated iridium complexes of several different configurations (three-coordinate d(8), four-coordinate d(8), and five-coordinate d(6)) have been investigated by computational and experimental means. The substituent para to the iridium (Y) has been varied in complexes containing the (Y-PCP)lr unit (Y-PCP = eta(3)-1,3,5-C6H2[CH2PR2](2)Y; R = methyl for computations; R = tert-butyl for experiments); substituent effects have been studied for the addition of H-2, C-H, and CO to the complexes (Y-PCP)Ir, (Y-PCP)Ir(CO), and (Y-PCP)Ir(H)(2). Para substituents on arenes undergoing C-H bond addition to (PCP)lr or to (PCP)Ir(CO) have also been varied computationally and experimentally. In general, increasing electron donation by the substituent Y in the 16-electron complexes, (Y-PCP)Ir(CO) or (Y-PCP)Ir(H)(2), disfavors addition of H-H or C-H bonds, in contradiction to the idea of such additions being oxidative. Addition of CO to the same 16-electron complexes is also disfavored by increased electron donation from Y. By contrast, addition of H-H and C-H bonds or CO to the three-coordinate parent species (Y-PCP)Ir is favored by increased electron donation. In general, the effects of varying Y are markedly similar for H-2, C-H, and CO addition. The trends can be fully rationalized in terms of simple molecular orbital interactions but not in terms of concepts related to oxidation, such as charge-transfer or electronegativity differences.
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页码:10797 / 10809
页数:13
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