Department of Chemistry, Texas A & M University, Box 30012, College Station, Texas 77841, USA.
J Am Chem Soc. 2010 May 5;132(17):6249-53. doi: 10.1021/ja101233g.
Acidities of iridium hydride intermediates were shown to be critical in some transformations mediated by the chiral analogues of Crabtree's catalyst, 1-3. To do this, several experiments were undertaken to investigate the acidities of hydrogenation mixtures formed using these iridium-oxazoline complexes. DFT calculations indicated that the acidity difference for Ir-H intermediates in these hydrogenations were astounding; iridium hydride from the N-heterocyclic carbene catalyst 1 was calculated to be around seven pK(a) units less acidic than those from the P-based complexes 2 and 3. Consistent with this, the carbene complex 1 was shown to be more effective for hydrogenations of acid-sensitive substrates. In deuteration experiments, less "abnormal" deuteration was observed, corresponding to fewer complications from acid-mediated alkene isomerization preceding the D(2)-addition step. Finally, simple tests with pH indicators provided visual evidence that phosphine-based catalyst precursors give significantly more acidic reaction mixtures than the corresponding N-heterocyclic carbene ones. These observations indicate carbene-for-phosphine (and similar) ligand substitutions may impact the outcome of catalytic reactions by modifying the acidities of the metal hydrides formed.
铱氢化物中间体的酸度被证明在由 Crabtree 催化剂的手性类似物介导的某些转化中是至关重要的。为此,进行了几项实验来研究使用这些铱-恶唑啉配合物形成的氢化混合物的酸度。DFT 计算表明,这些氢化中 Ir-H 中间体的酸度差异惊人;与基于 P 的配合物 2 和 3 相比,来自 N-杂环卡宾催化剂 1 的铱氢化物被计算出约低七个 pK(a)单位。与此一致,卡宾配合物 1 被证明更有效地用于对酸敏感底物的氢化。在氘化实验中,观察到较少的“异常”氘化,这对应于在 D(2)-加成步骤之前,酸介导的烯烃异构化引起的复杂性减少。最后,使用 pH 指示剂进行的简单测试提供了直观的证据,表明膦基催化剂前体形成的反应混合物比相应的 N-杂环卡宾的反应混合物具有明显更高的酸度。这些观察结果表明,通过改变形成的金属氢化物的酸度,卡宾取代膦(和类似物)配体可能会影响催化反应的结果。