Novel Multicomponent Reactions via Trapping of Protic Onium Ylides with Electrophiles
Тип публикации: Journal Article
Дата публикации: 2013-06-25
scimago Q1
wos Q1
БС1
SJR: 5.433
CiteScore: 30.7
Impact factor: 17.7
ISSN: 00014842, 15204898
PubMed ID:
24246000
General Chemistry
General Medicine
Краткое описание
Multicomponent reactions (MCRs) are one-pot processes in which three or more starting materials form a product that incorporates the structural features of each reagent. These reactions date back to the mid-19th century, when Strecker first prepared α-aminonitriles through the condensation of aldehydes with ammonia and hydrogen cyanide. In addition to affording products with structural complexity and diversity, MCRs offer the advantages of simplicity, synthetic efficiency, synthetic convergence, and atom economy. Therefore, they have played an important role in modern synthetic organic chemistry and drug-discovery research. The irreversible trapping of an active intermediate generated from two components by a third one offers an effective way to discover novel MCRs. In cases where the intermediate from the first two components is reactive enough to generate a two-component byproduct, it becomes challenging to control of the chemoselectivity of these MCRs over the side reaction. For example, researchers had expected that ammonium/oxonium ylides, high energy intermediates that have acidic protons and basic carbanions attached to adjacent carbons, would be too reactive to be intercepted by external electrophiles. Instead, a very fast 1,2-proton transfer would neutralize the charge separation, resulting in a stable N-H/O-H insertion product. In this Account, we present our efforts toward the development of novel MCRs via trapping of the active ammonium/oxonium ylide intermediates with a number of electrophiles. In these reactions, a "delayed proton transfer" that occurs after the trapping process produces novel multicomponent coupling products. Thus, transition-metal-catalyzed MCRs of diazocarbonyl compounds, anilines/alcohols, and electrophiles efficiently afford polyfunctional molecules such as α-amino-β-hydroxy acids, α-hydroxy-β-amino acids, α,β-diamino acids, and α,β-dihydroxy acid derivatives. We have also applied a cooperative catalysis strategy to some of these MCRs leading to reactions with high chemo-, diastereo-, and enantioselectivity. These MCRs also provide solid experimental evidence for the existence of the active protic onium ylides.
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Guo X., Hu W. Novel Multicomponent Reactions via Trapping of Protic Onium Ylides with Electrophiles // Accounts of Chemical Research. 2013. Vol. 46. No. 11. pp. 2427-2440.
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Guo X., Hu W. Novel Multicomponent Reactions via Trapping of Protic Onium Ylides with Electrophiles // Accounts of Chemical Research. 2013. Vol. 46. No. 11. pp. 2427-2440.
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TY - JOUR
DO - 10.1021/ar300340k
UR - https://doi.org/10.1021/ar300340k
TI - Novel Multicomponent Reactions via Trapping of Protic Onium Ylides with Electrophiles
T2 - Accounts of Chemical Research
AU - Guo, Xin
AU - Hu, Wenhao
PY - 2013
DA - 2013/06/25
PB - American Chemical Society (ACS)
SP - 2427-2440
IS - 11
VL - 46
PMID - 24246000
SN - 0001-4842
SN - 1520-4898
ER -
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@article{2013_Guo,
author = {Xin Guo and Wenhao Hu},
title = {Novel Multicomponent Reactions via Trapping of Protic Onium Ylides with Electrophiles},
journal = {Accounts of Chemical Research},
year = {2013},
volume = {46},
publisher = {American Chemical Society (ACS)},
month = {jun},
url = {https://doi.org/10.1021/ar300340k},
number = {11},
pages = {2427--2440},
doi = {10.1021/ar300340k}
}
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Guo, Xin, and Wenhao Hu. “Novel Multicomponent Reactions via Trapping of Protic Onium Ylides with Electrophiles.” Accounts of Chemical Research, vol. 46, no. 11, Jun. 2013, pp. 2427-2440. https://doi.org/10.1021/ar300340k.