Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, Minnesota 55455-0431, United States.
Inorg Chem. 2011 Mar 21;50(6):2545-52. doi: 10.1021/ic102373w. Epub 2011 Feb 17.
The diphosphine 4,6-bis(3-diisopropylphosphinophenyl)dibenzofuran (abbreviated as (iPr)DPDBFphos) was prepared and studied for its potential as a trans-chelating ligand in transition-metal coordination complexes. In the rhodium norbornadiene complex [((iPr)DPDBFphos)Rh(NBD)]BF(4), which has been characterized with multinuclear NMR spectroscopy, X-ray crystallography, and electrochemical studies, the ligand binds in cis fashion. In the bis(acetonitrile) complexes of rhodium and palladium ((iPr)DPDBFphos)M(CH(3)CN)(2)(n) (M = Rh, Pd; n = 1, 2), the ligand adopts a trans coordination geometry. Density functional theory (DFT, M06-L) calculations predict that the trans conformer is energetically more favorable than the cis by 3.5 kcal/mol. Cyclic voltammograms of the bis(acetonitrile) Pd(II) and Rh(I) complexes contain reversible and quasi-reversible reduction events, respectively, which are preliminarily assigned as metal-based redox reactions.
二膦配体 4,6-双(3-二异丙基膦基苯基)二苯并呋喃(缩写为(iPr)DPDBFphos)被制备并研究其作为过渡金属配位配合物中反式螯合配体的潜力。在已通过多核 NMR 光谱、X 射线晶体学和电化学研究进行表征的降冰片二烯铑配合物[((iPr)DPDBFphos)Rh(NBD)]BF(4)中,配体以顺式方式结合。在铑和钯的双(乙腈)配合物((iPr)DPDBFphos)M(CH(3)CN)(2)(n)(M = Rh,Pd;n = 1,2)中,配体采用反式配位几何构型。密度泛函理论(DFT,M06-L)计算预测反式构象比顺式构象稳定 3.5 kcal/mol。双(乙腈)Pd(II)和 Rh(I)配合物的循环伏安图分别包含可逆和准可逆还原事件,这些事件初步被分配为基于金属的氧化还原反应。