High-turnover palladium catalysts in cross-coupling and Heck chemistry: A critical overview

被引:632
作者
Farina, V [1 ]
机构
[1] Boehringer Ingelheim Pharmaceut Inc, Dept Chem Dev, Ridgefield, CT 06877 USA
关键词
amination; bidentate ligands; carbene ligands; colloids; cross-coupling reaction; Heck reaction; heterogeneous catalysis; ligandless; nanoparticles; palladacycles; palladium; phosphane ligands; turnover frequency (TOF); turnover number (TON);
D O I
10.1002/adsc.200404178
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
This review discusses the problems associated with developing high-turnover catalysts for the cross-coupling and Heck reactions. New developments in the area, principally constituted by pallada-cycles and coordinatively unsaturated Pd catalysts featuring bulky phosphanes of high donicity, are reviewed from a mechanistic and synthetic standpoint, and compared with more traditional catalysts obtained from conventional mono- and polydentate N-and P-based ligands, as well as Pd catalysts without strong ligands, such as Pd colloids or heterogeneous catalysts. Carbene ligands are also briefly presented. Whereas a single, most promising approach to high-turnover Pd catalysis cannot presently be defined, it is clear that the new "PdL1" catalysts (where L-1 is a monodentate bulky P ligand of high donicity) represent the latest, most important development in Pd research, certainly from the standpoint of scope and probably also from the standpoint of efficiency. High turnovers with these catalysts have been described and their use will certainly increase in the next few years. The review ends with a brief discussion containing practical considerations on how to choose a high TON catalyst for a given Heck or cross-coupling reaction of interest. 1 Introduction 2 Different Paradigms in High TON Research 3 Palladacycle Pre-Catalysts 4 Highly Coordinatively Unsaturated Palladium Catalysts 5 Carbene Ligands 6 Bi- or Multidentate P- or N-Based Ligands 7 "Ligandless" Catalysts 8 Stable Colloids and Nanoparticles 9 Traditional Catalytic Systems 10 Polymer-Supported Catalysts 11 Heterogeneous Catalysts 12 Practical Considerations and Conclusion.
引用
收藏
页码:1553 / 1582
页数:30
相关论文
共 276 条
[91]   Efficient coupling of heteroaryl bromides with arylboronic acids in the presence of a palladium-tetraphosphine catalyst [J].
Feuerstein, M ;
Doucet, H ;
Santelli, M .
TETRAHEDRON LETTERS, 2001, 42 (33) :5659-5662
[92]   Palladium-tetraphosphine catalysed cross coupling of aryl bromides with arylboronic acids: remarkable influence of the nature of the ligand [J].
Feuerstein, M ;
Laurenti, D ;
Bougeant, C ;
Doucet, H ;
Santelli, M .
CHEMICAL COMMUNICATIONS, 2001, (04) :325-326
[93]   Dramatic acceleration of the catalytic process of the amination of allyl acetates in the presence of a tetraphosphine/palladium system [J].
Feuerstein, M ;
Laurenti, D ;
Doucet, H ;
Santelli, M .
CHEMICAL COMMUNICATIONS, 2001, (01) :43-44
[94]   Highly active and selective catalysts for the formation of α-aryl ketones [J].
Fox, JM ;
Huang, XH ;
Chieffi, A ;
Buchwald, SL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2000, 122 (07) :1360-1370
[95]   Pyrazole and benzothiazole palladacycles: stable and efficient catalysts for carbon-carbon bond formation [J].
Gai, XJ ;
Grigg, R ;
Ramzan, MI ;
Sridharan, V ;
Collard, S ;
Muir, JE .
CHEMICAL COMMUNICATIONS, 2000, (20) :2053-2054
[96]   Palladium catalyzed intramolecular nucleophilic addition of allylic species, generated from allene, to aryl aldehydes and ketones [J].
Gai, XJ ;
Grigg, R ;
Collard, S ;
Muir, JE .
CHEMICAL COMMUNICATIONS, 2000, (18) :1765-1766
[97]  
Galardon E, 2002, ANGEW CHEM INT EDIT, V41, P1760, DOI 10.1002/1521-3773(20020517)41:10<1760::AID-ANIE1760>3.0.CO
[98]  
2-3
[99]   Highly efficient C-C coupling reactions using metallated benzylphosphine complexes of palladium [J].
Gibson, S ;
Foster, DF ;
Eastham, GR ;
Tooze, RP ;
Cole-Hamilton, DJ .
CHEMICAL COMMUNICATIONS, 2001, (08) :779-780
[100]  
GREU M, 2000, CHEM COMMUN, P2475