TY - JOUR
T1 - 4,5-Dioxo-imidazolinium Cation Activation of 1-Acyl-1-carbamoyl Oximes
T2 - Access to Cyanoformamides Using Dichloroimidazolidinedione
AU - Gao, Yu
AU - Zhang, Zhihao
AU - Li, Zhenjiang
AU - Guo, Tianfo
AU - Zhu, Yuejia
AU - Yao, Zhiwei
AU - Liu, Bo
AU - Li, Yongqiang
AU - Guo, Kai
N1 - Publisher Copyright:
Copyright © 2019 American Chemical Society.
PY - 2020/1/17
Y1 - 2020/1/17
N2 - Cyanoformamides are prevalent as versatile building blocks for accessing synthetically useful intermediates and biologically active compounds. The development of a milder, simpler, and more efficient approach to cyanoformamides is nontrivial. Herein, we demonstrate the effectiveness of 4,5-dioxo-imidazolinium cation activation for transforming 1-acyl-1-carbamoyl oximes to cyanoformamides. By making use of the readily available and highly modifiable dichloroimidazolidinediones (DCIDs), this novel method of activation offers reactivity remarkably greater than that of other reported protocols, exhibits a high functional group compatibility with mild conditions, and could be scaled up easily. More than 30 examples are demonstrated with good to excellent yields in short reaction times. This research not only provides a mild and efficient alternative approach to assembling a portfolio of cyanoformamides but also extends the dichloroimidazolidinedione-mediated chemistry to encompass the C-C bond cleavage reaction.
AB - Cyanoformamides are prevalent as versatile building blocks for accessing synthetically useful intermediates and biologically active compounds. The development of a milder, simpler, and more efficient approach to cyanoformamides is nontrivial. Herein, we demonstrate the effectiveness of 4,5-dioxo-imidazolinium cation activation for transforming 1-acyl-1-carbamoyl oximes to cyanoformamides. By making use of the readily available and highly modifiable dichloroimidazolidinediones (DCIDs), this novel method of activation offers reactivity remarkably greater than that of other reported protocols, exhibits a high functional group compatibility with mild conditions, and could be scaled up easily. More than 30 examples are demonstrated with good to excellent yields in short reaction times. This research not only provides a mild and efficient alternative approach to assembling a portfolio of cyanoformamides but also extends the dichloroimidazolidinedione-mediated chemistry to encompass the C-C bond cleavage reaction.
UR - http://www.scopus.com/inward/record.url?scp=85078441130&partnerID=8YFLogxK
U2 - 10.1021/acs.joc.9b02992
DO - 10.1021/acs.joc.9b02992
M3 - 文章
C2 - 31845808
AN - SCOPUS:85078441130
SN - 0022-3263
VL - 85
SP - 1087
EP - 1096
JO - Journal of Organic Chemistry
JF - Journal of Organic Chemistry
IS - 2
ER -