The thermal and boron-catalysed direct amide formation reactions: mechanistically understudied yet important processes

被引:246
作者
Charville, Hayley [1 ]
Jackson, David [2 ]
Hodges, George [3 ]
Whiting, Andrew [1 ]
机构
[1] Univ Durham, Dept Chem, Sci Labs, Durham DH1 3LE, England
[2] Syngenta AG, Proc Technol, Muenchwilen, Switzerland
[3] Syngenta, Jealotts Hill Int Res Ctr, Bracknell RG42 6EY, Berks, England
关键词
CARBOXYLIC-ACIDS; BOND FORMATION; MICROWAVE IRRADIATION; COUPLING REAGENTS; BORIC-ACID; AMINES; CONDENSATION; AMIDATION; DIBORATE;
D O I
10.1039/b923093a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Despite the amide formation reaction being one of the key cornerstone reactions in organic chemistry, the direct amide formation is both little used and little explored. Acceptance of the feasibility and general applicability of the reaction depends upon the ability of researchers to bring it into the mainstream by development of: (1) an understanding of the mechanism of the reaction; and (2) the design of catalysts which promote the reaction on a wide range of substrates and under ambient conditions. From the earliest report of the direct amide formation in the 19th century, there have been relatively few reports of mechanistic studies, though it is clear that there is not a simple relationship between ease of direct amide formation and the pK(a) of the carboxylic acid and amine, or whether salt ammonium carboxylate formation is important. Consequently, direct amide formation has historically been run under higher temperature conditions. However, more recently, stoichiometric and catalytic boron compounds have been developed that considerably reduce the reaction temperatures under which direct amide formation will proceed. Limited attempts at mechanistic studies point to the formation of acyloxyborate or boronate species acting essentially as mixed anhydrides, though the exact order of these systems remains to be categorically determined.
引用
收藏
页码:1813 / 1823
页数:11
相关论文
共 47 条
[1]   Direct and waste-free amidations and cycloadditions by organocatalytic activation of carboxylic acids at room temperature [J].
Al-Zoubi, Raed M. ;
Marion, Olivier ;
Hall, Dennis G. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2008, 47 (15) :2876-2879
[2]   Asymmetric direct amide synthesis by kinetic amine resolution:: A chiral bifunctional aminoboronic acid catalyzed reaction between a racemic amine and an achiral carboxylic acid [J].
Arnold, Kenny ;
Davies, Bryan ;
Herault, Damien ;
Whiting, Andrew .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2008, 47 (14) :2673-2676
[3]   Synthesis, evaluation and application of novel bifunctional N,N-di-isopropylbenzylamineboronic acid catalysts for direct amide formation between carboxylic acids and amines [J].
Arnold, Kenny ;
Batsanov, Andrei S. ;
Davies, Bryan ;
Whiting, Andrew .
GREEN CHEMISTRY, 2008, 10 (01) :124-134
[4]   To catalyze or not to catalyze? Insight into direct amide bond formation from amines and carboxylic acids under thermal and catalyzed conditions [J].
Arnold, Kenny ;
Davies, Bryan ;
Giles, Richard L. ;
Grosjean, Christophe ;
Smith, Gillian E. ;
Whiting, Andrew .
ADVANCED SYNTHESIS & CATALYSIS, 2006, 348 (7-8) :813-820
[5]   Improved microwave oven synthesis of amides and imides promoted by imidazole; Convenient transport agent preparation [J].
Baldwin, BW ;
Hirose, T ;
Wang, ZH .
CHEMICAL COMMUNICATIONS, 1996, (23) :2669-2670
[6]   MICROWAVE-ASSISTED ORGANIC-REACTIONS [J].
CADDICK, S .
TETRAHEDRON, 1995, 51 (38) :10403-10432
[7]  
CAMPBELL AW, 1961, Patent No. 3006956
[8]  
Clarke HT, 1936, ORG SYNTH, V16, P75
[9]   Desolvation and substituent effects in edge-to-face aromatic interactions [J].
Cockroft, Scott L. ;
Hunter, Christopher A. .
CHEMICAL COMMUNICATIONS, 2009, (26) :3961-3963
[10]  
Coleman GH, 1923, ORG SYNTH, V3, P3