Direct Nucleophilic SN1-Type Reactions of Alcohols

被引:312
作者
Emer, Enrico [1 ]
Sinisi, Riccardo [1 ]
Capdevila, Montse Guiteras [1 ]
Petruzziello, Diego [1 ]
De Vincentiis, Francesco [1 ]
Cozzi, Pier Giorgio [1 ]
机构
[1] Univ Bologna, ALMA MATER STUDIORUM, Dipartimento Chim G Ciamician, I-40126 Bologna, Italy
关键词
Alcohols; Lewis acids; Bronsted acids; Nucleophilic substitution; Green chemistry; FRIEDEL-CRAFTS ALKYLATION; ONE-POT SYNTHESIS; PROPARGYLIC SUBSTITUTION-REACTION; CATALYZED ALLYLIC ALKYLATION; CARBON BOND FORMATION; BRIDGED DIRUTHENIUM COMPLEXES; SECONDARY BENZYL ALCOHOLS; BAYLIS-HILLMAN ADDUCTS; ELECTRON-RICH ARENES; AROMATIC-COMPOUNDS;
D O I
10.1002/ejoc.201001474
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
In 2005, the ACS Green Chemistry Institute (GCI) and the global pharmaceutical corporations developed the ACS GCI Pharmaceutical Roundtable to encourage the development of green chemistry and green engineering in the pharmaceutical industry. The Roundtable has established a list of key research areas including the direct nucleophilic reactions of alcohols. The substitution of activated alcohols is a frequently used approach for the preparation of active pharmaceutical ingredients. Alcohols are transformed into the reactive halides or sulfonate esters, thereby allowing their reaction with nucleophiles. Although the direct nucleophilic substitution of an alcohol should be an attractive process, as one of the byproducts from the reaction yields water, hydroxide is a poor leaving group that hinders the reaction. Recently, the direct substitution of allylic, benzylic, and tertiary alcohols has been achieved through an S(N)1 reaction with catalytic amounts of Bronsted or Lewis acids. In this review, the approaches leading to a greener process are examined in detail, and the advances achieved to date in this important transformation are presented.
引用
收藏
页码:647 / 666
页数:20
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