Department of Chemistry, National Taiwan University, Taipei, 106, Taiwan.
Dalton Trans. 2009 Sep 21(35):6991-8. doi: 10.1039/b906016b. Epub 2009 Jul 2.
Iridium complexes [(CO)2Ir(NHC-R)Cl] (R = Et-, 3a; PhCH2-, 3b; CH3OCH2CH2-, 3c; o-CH3OC6H4CH2-, 3d; NHC: N-heterocyclic carbene) are prepared via the carbene transfer from [(NHC-R)W(CO)5] to [Ir(COD)Cl]2. By using substitution with 13CO, we are able to estimate the activation energy (G) of the CO-exchange in 3a-d, which are in the range of 12-13 kcal mol-1, significantly higher than those for the phosphine analog [(CO)2Ir(PCy3)Cl]. Reactions of 3b and 3d with an equimolar amount of PPh3 result in the formation of the corresponding [(NHC-R)Ir(CO)(PPh3)Cl] with the phosphine and NHC in trans arrangement. In contrast, the analogous reaction of 3a or 3c with phosphine undergoes substitution followed by the anion metathesis to yield the corresponding di-substituted [(NHC-R)Ir(CO)(PPh3)2]BF4 (5) directly. Treatment of 3b or 3d with excess of PPh3 leads to the similar product of disubstitution 5b and 5d. The analysis for the IR data of carbonyliridium complexes provides the estimation of electron-donating power of NHCs versus phosphines. The NHC moiety on the iridium center cannot be replaced by phosphines, even 1,2-bis(diphenylphohino)ethane (dppe). All the carbene moieties on the iridium complexes are inert toward sulfur treatment, indicating a strong interaction between NHC and the iridium centers. Complexes 3a-c are active on the catalysis of the oxidative cyclization of 2-(o-aminophenyl)ethanol to yield the indole compound. The phosphine substituted complexes or analogs are less active.
铱配合物[(CO)2Ir(NHC-R)Cl](R=Et-,3a;PhCH2-,3b;CH3OCH2CH2-,3c;o-CH3OC6H4CH2-,3d;NHC:N-杂环卡宾)通过[(NHC-R)W(CO)5]向[Ir(COD)Cl]2转移卡宾制备。通过用 13CO 取代,可以估计 3a-d 中 CO 交换的活化能(G),范围在 12-13 kcal mol-1,明显高于膦类似物[(CO)2Ir(PCy3)Cl]。3b 和 3d 与等摩尔量的 PPh3反应生成相应的具有反式膦和 NHC 的[(NHC-R)Ir(CO)(PPh3)Cl]。相比之下,3a 或 3c 与膦的类似反应经历取代,然后进行阴离子交换,直接生成相应的二取代[(NHC-R)Ir(CO)(PPh3)2]BF4(5)。3b 或 3d 与过量的 PPh3 处理导致类似的双取代产物 5b 和 5d。对羰基铱配合物的 IR 数据的分析提供了 NHC 相对于膦的电子供体能力的估计。铱中心上的 NHC 部分不能被膦取代,即使是 1,2-双(二苯基膦)乙烷(dppe)。所有铱配合物上的卡宾部分对硫处理都不反应,表明 NHC 与铱中心之间存在强烈相互作用。配合物 3a-c 在催化 2-(邻氨基苯基)乙醇氧化环化生成吲哚化合物方面具有活性。膦取代的配合物或类似物的活性较低。