Mechanism of a no-metal-added heterocycloisomerization of alkynylcyclopropylhydrazones: Synthesis of cycloheptane-fused aminopyrroles facilitated by copper salts at trace loadings
Digital Document
| Collection(s) |
Collection(s)
|
|---|---|
| Content type |
Content type
|
| Resource Type |
Resource Type
|
| Genre |
Genre
|
| Language |
Language
|
| Peer Review Status |
Peer Review Status
Peer Reviewed
|
| Persons |
Author (aut): Wilkerson-Hill, Sidney M.
Author (aut): Painter, Phillip P.
Author (aut): Fisher, Ethan L.
Author (aut): Tantillo, Dean J.
Author (aut): Sarpong, Richmond
Author (aut): Hein, Jason E.
Author (aut):
|
|---|
| Origin Information |
|
|---|
| Abstract |
Abstract
A mechanistic study of a new heterocycloisomerization reaction that forms annulated aminopyrroles is presented. Density functional theory calculations and kinetic studies suggest the reaction is catalyzed by trace copper salts and that a Z- to E-hydrazone isomerization occurs through an enehydrazine intermediate before the rate-determining cyclization of the hydrazone onto the alkyne group. The aminopyrrole products are obtained in 36–93% isolated yield depending on the nature of the alkynyl substituent. A new automated sampling technique was developed to obtain robust mechanistic data.
|
|---|
| Publication Title |
Publication Title
|
|---|---|
| Publication Number |
Publication Number
Volume 139, Issue 30
|
| DOI |
DOI
10.1021/jacs.7b06007
|
|---|---|
| ISSN |
ISSN
0002-7863
|
| Note |
|
|---|
| Use and Reproduction |
Use and Reproduction
©2017. American Chemical Society.
|
|---|---|
| Rights Statement |
Rights Statement
|