Mechanism of Pd(OAc)2/Pyridine Catalyst Reoxidation by O2: Influence of Labile Monodentate Ligands and Identification of a Biomimetic Mechanism for O2 Activation

被引:92
作者
Popp, Brian V. [1 ]
Stahl, Shannon S. [1 ]
机构
[1] Univ Wisconsin, Dept Chem, Madison, WI 53706 USA
关键词
homogeneous catalysis; density functional calculations; dioxygen ligands; oxidation; palladium; AEROBIC ALCOHOL OXIDATION; COUPLED ELECTRON-TRANSFER; PD-MEDIATED ACTIVATION; MOLECULAR-OXYGEN; PALLADIUM(II)-CATALYZED OXIDATION; ORGANIC-CHEMICALS; II-HYDROPEROXIDE; SOLVATION MODELS; PALLADIUM; COMPLEXES;
D O I
10.1002/chem.200802311
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The mechanism of catalyst oxidation by O-2 in Pd-catalyzed aerobic oxidation reactions has been the subject of considerable debate, particularly with respect to the reactivity of Pd-II-hydride species. Here. we describe the use of unrestricted DFT computational methods to investigate the mechanism of catalyst reoxidation with the Pd(OAc)(2)/pyridine catalyst system, one of the most widely used catalysts. These Studies probe four different pathways for the formation of a Pd-II-hydroperoxide species from the reaction of 0, from the corresponding Pd-II-hydride [(py)(n)Pd-II(H)OAc]: 1) a homolytic pathway involving hydrogen-atom abstraction by O-2: 2) AcOH reductive elimination to yield a Pd-0 species that subsequently reacts with O-2; 3) migratory insertion of O-2 into a Pd-H bond: and 4) oxidative addition of O-2 to Pd-II to yield a Pd-IV(eta(2)-peroxo) species. In conlrast to previous Studies of reactions between O-2 and Pd-hydride species, the reductive-elimination pathway (mechanism 2) is significantly more favorable than ant of the other pathways. This outcome is traced to the presence of labile ligands (pyridine) that can readily dissociate from Pd to enable the hydride and acetate ligands to Occupy cis-coordination sites. These results strongly support the involvement of Pd-0 as an intermediate in the catalytic cycle. Investigations of the mechanism of the reaction of O-2 with the Pd-0 intermediate revealed a novel. previously unrecognized mechanism that yields a Pd-OOH product Without proceeding through the intermediacy of a Pd-II(eta(2)-peroxo) species. This mechanism resembles pathways commonly observed in biological O-2 activation and suggests that noble-inetal and biological oxidation mechanisms may be more similar than previously appreciated.
引用
收藏
页码:2915 / 2922
页数:8
相关论文
共 92 条
[61]  
Popp B.V., 2007, Angew. Chem, V119, P607, DOI [10.1002/ange.200603667, DOI 10.1002/ANGE.200603667]
[62]  
Popp BV, 2007, TOP ORGANOMETAL CHEM, V22, P149, DOI 10.1007/3418_039
[63]   Insertion of molecular oxygen into a palladium-hydride bond: Computational evidence for two nearly isoenergetic pathways [J].
Popp, Brian V. ;
Stahl, Shannon S. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (14) :4410-4422
[64]   Reaction of molecular oxygen with an NHC-coordinated Pd0 complex:: Computational insights and experimental implications [J].
Popp, Brian V. ;
Wendlandt, Johanna E. ;
Landis, Clark R. ;
Stahl, Shannon S. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2007, 46 (04) :601-604
[65]   Theoretical studies of the mechanism of aerobic alcohol oxidation with palladium catalyst systems [J].
Privalov, T ;
Linde, C ;
Zetterberg, K ;
Moberg, C .
ORGANOMETALLICS, 2005, 24 (05) :885-893
[66]   Proton-coupled electron transfer: the mechanistic underpinning for radical transport and catalysis in biology [J].
Reece, Steven Y. ;
Hodgkiss, Justin M. ;
Stubbe, JoAnne ;
Nocera, Daniel G. .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2006, 361 (1472) :1351-1364
[67]   NATURAL-POPULATION ANALYSIS [J].
REED, AE ;
WEINSTOCK, RB ;
WEINHOLD, F .
JOURNAL OF CHEMICAL PHYSICS, 1985, 83 (02) :735-746
[68]   Role of proton-coupled electron transfer in O-O bond activation [J].
Rosenthal, Joel ;
Nocera, Daniel G. .
ACCOUNTS OF CHEMICAL RESEARCH, 2007, 40 (07) :543-553
[69]   Using mechanistic and computational studies to explain ligand effects in the palladium-catalyzed aerobic oxidation of alcohols [J].
Schultz, MJ ;
Adler, RS ;
Zierkiewicz, W ;
Privalov, T ;
Sigman, MS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2005, 127 (23) :8499-8507
[70]   THE IRON OXYGEN BOND IN HUMAN OXYHEMOGLOBIN [J].
SHAANAN, B .
NATURE, 1982, 296 (5858) :683-684