The Hendrickson reagent and the Mitsunobu reaction: a mechanistic study

被引:44
作者
Elson, KE
Jenkins, ID [1 ]
Loughlin, WA
机构
[1] Griffith Univ, Sch Sci, Brisbane, Qld 4111, Australia
[2] Griffith Univ, Nathan, Qld 4111, Australia
关键词
D O I
10.1039/b305375j
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
The alkoxytriphenylphosphonium ion intermediate of the Mitsunobu reaction can be generated using the Hendrickson reagent, triphenylphosphonium anhydride trifluoromethanesulfonate, 1. Strangely, while the reagent 1 can be used in place of the Mitsunobu reagents (triphenylphosphine and a dialkylazodicarboxylate) for the esterification of primary alcohols, secondary alcohols such as menthol undergo elimination. Evidence is presented to show that this unexpected result is due to the presence of trialkylammonium triflate salts. Such salts lead to a dramatic decrease in the rate of esterification relative to competing elimination. The Mitsunobu esterification of menthol with p-nitrobenzoic acid was re-examined and the occurrence of elimination reported for the first time. The presence of traces of tetrabutylammonium triflate led to a dramatic reduction in the yield of inverted ester and a corresponding increase in the yield of anti elimination product 2-menthene. The mechanism of the Mitsunobu reaction is discussed in the light of the dramatic salt effect on both the rate and outcome of the reaction and the possible involvement of ion pair clustering. In contrast, use of the reagent 1 resulted in syn elimination to give a 1 : 2 mixture of 2- and 3-menthenes. Finally, 1 and sodium azide can be used to convert a primary alcohol into an azide in high yield. There was no reaction under Mitsunobu conditions.
引用
收藏
页码:2958 / 2965
页数:8
相关论文
共 46 条
[1]   THE MECHANISM OF THE MITSUNOBU REACTION .3. THE USE OF TRIBUTYLPHOSPHINE [J].
CAMP, D ;
JENKINS, ID .
AUSTRALIAN JOURNAL OF CHEMISTRY, 1992, 45 (01) :47-55
[2]   THE USE OF A PHOSPHINE CONTAINING A BASIC GROUP IN THE MITSUNOBU ESTERIFICATION REACTION [J].
CAMP, D ;
JENKINS, ID .
AUSTRALIAN JOURNAL OF CHEMISTRY, 1988, 41 (12) :1835-1839
[3]   MECHANISM OF THE MITSUNOBU ESTERIFICATION REACTION .1. THE INVOLVEMENT OF PHOSPHORANES AND OXYPHOSPHONIUM SALTS [J].
CAMP, D ;
JENKINS, ID .
JOURNAL OF ORGANIC CHEMISTRY, 1989, 54 (13) :3045-3049
[4]   MECHANISM OF THE MITSUNOBU ESTERIFICATION REACTION .2. THE INVOLVEMENT OF (ACYLOXY)ALKOXYPHOSPHORANES [J].
CAMP, D ;
JENKINS, ID .
JOURNAL OF ORGANIC CHEMISTRY, 1989, 54 (13) :3049-3054
[5]   Ready access to stereodefined beta-hydroxy-gamma-amino acids. Enantioselective synthesis of fully protected cyclohexylstatine. [J].
Castejon, P ;
Moyano, A ;
Pericas, MA ;
Riera, A .
TETRAHEDRON, 1996, 52 (20) :7063-7086
[6]   EFFECT OF THE ACIDIC COMPONENT ON THE MITSUNOBU INVERSION OF A STERICALLY HINDERED ALCOHOL [J].
DODGE, JA ;
TRUJILLO, JI ;
PRESNELL, M .
JOURNAL OF ORGANIC CHEMISTRY, 1994, 59 (01) :234-236
[7]  
Dodge JA, 1996, ORG SYNTH, V73, P110
[8]   TOTAL SYNTHESIS OF (+/-)-9-DEOXYGONIOPYPYRONE [J].
FRIESEN, RW ;
BISSADA, S .
TETRAHEDRON LETTERS, 1994, 35 (31) :5615-5618
[9]   Mild and selective sodium azide mediated cleavage of p-nitrobenzoic esters [J].
Gómez-Vidal, JA ;
Forrester, MT ;
Silverman, RB .
ORGANIC LETTERS, 2001, 3 (16) :2477-2479
[10]   THE MECHANISM OF THE MITSUNOBU REACTION - A P-31 NMR-STUDY [J].
GUTHRIE, RD ;
JENKINS, ID .
AUSTRALIAN JOURNAL OF CHEMISTRY, 1982, 35 (04) :767-774