Department of Chemistry, University of Miami, Coral Gables, Florida 33146, United States.
J Am Chem Soc. 2011 Feb 9;133(5):1290-3. doi: 10.1021/ja1103348. Epub 2011 Jan 4.
The reactivity of a number of two-coordinate [Pd(L)(L')] (L = N-heterocyclic carbene (NHC) and L' = NHC or PR(3)) complexes with O(2) has been examined. Stopped-flow kinetic studies show that O(2) binding to [Pd(IPr)(P(p-tolyl)(3))] to form cis-[Pd(IPr)(P(p-tolyl)(3))(η(2)-O(2))] occurs in a rapid, second-order process. The enthalpy of O(2) binding to the Pd(0) center has been determined by solution calorimetry to be -26.2(1.9) kcal/mol. Extension of this work to the bis-NHC complex [Pd(IPr)(2)], however, did not lead to the formation of the expected diamagnetic complex cis-[Pd(IPr)(2)(η(2)-O(2))] but to paramagnetic trans-[(Pd(IPr)(2)(η(1)-O(2))(2)], which has been fully characterized. Computational studies addressing the energetics of O(2) binding have been performed and provide insight into reactivity changes as steric pressure is increased.
已经考察了一系列二配位[Pd(L)(L')](L= N-杂环卡宾(NHC)和 L'= NHC 或 PR(3))配合物与 O(2)的反应性。停流动力学研究表明,O(2)与[Pd(IPr)(P(p-tolyl)(3))]的结合形成顺式-[Pd(IPr)(P(p-tolyl)(3))(η(2)-O(2))]是快速的,二级过程。通过溶液量热法确定 Pd(0)中心与 O(2)结合的焓为-26.2(1.9)kcal/mol。然而,将这项工作扩展到双 NHC 配合物[Pd(IPr)(2)]并没有得到预期的顺磁性配合物顺式-[Pd(IPr)(2)(η(2)-O(2))],而是得到了顺磁性反式[(Pd(IPr)(2)(η(1)-O(2))(2)],其已被充分表征。已经进行了涉及 O(2)结合能的计算研究,为增加空间位阻时的反应性变化提供了深入的了解。