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H-bond donor-directed switching of diastereoselectivity in the Michael addition of α-azido ketones to nitroolefins

The development of catalyst-controlled stereodivergent asymmetric catalysis is important for providing facile access to all stereoisomers of chiral products with multiple stereocenters from the same starting materials. Despite progress, new design strategies for diastereodivergent asymmetric catalys...

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Autores principales: Ding, Pei-Gang, Zhou, Feng, Wang, Xin, Zhao, Qiu-Hua, Yu, Jin-Sheng, Zhou, Jian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8152593/
https://www.ncbi.nlm.nih.gov/pubmed/34122853
http://dx.doi.org/10.1039/d0sc00475h
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author Ding, Pei-Gang
Zhou, Feng
Wang, Xin
Zhao, Qiu-Hua
Yu, Jin-Sheng
Zhou, Jian
author_facet Ding, Pei-Gang
Zhou, Feng
Wang, Xin
Zhao, Qiu-Hua
Yu, Jin-Sheng
Zhou, Jian
author_sort Ding, Pei-Gang
collection PubMed
description The development of catalyst-controlled stereodivergent asymmetric catalysis is important for providing facile access to all stereoisomers of chiral products with multiple stereocenters from the same starting materials. Despite progress, new design strategies for diastereodivergent asymmetric catalysis are still highly desirable. Here we report the potency of H-bond donors as the governing factor to tune diastereoselectivity in a highly diastereoselective switchable enantioselective Michael addition of α-azido ketones to nitroolefins. While a newly developed bifunctional tertiary amine, phosphoramide, preferentially afforded syn-adducts, an analogous squaramide catalyst selectively gave anti-adducts. The resulting multifunctional tertiary azides can be converted to spiro-pyrrolidines with four continuous stereocenters in a one-pot operation. Mechanistic studies cast light on the control of diastereoselectivity by H-bond donors. While the squaramide-catalyzed reaction proceeded with a transition state with both squaramide N–H bonds binding to an enolate intermediate, an unprecedented model was proposed for the phosphoramide-mediated reaction wherein an amide N–H bond and an alkylammonium ion formed in situ interact with nitroolefins, with the enolate stabilized by nonclassical C–H⋯O hydrogen-bonding interactions.
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spelling pubmed-81525932021-06-11 H-bond donor-directed switching of diastereoselectivity in the Michael addition of α-azido ketones to nitroolefins Ding, Pei-Gang Zhou, Feng Wang, Xin Zhao, Qiu-Hua Yu, Jin-Sheng Zhou, Jian Chem Sci Chemistry The development of catalyst-controlled stereodivergent asymmetric catalysis is important for providing facile access to all stereoisomers of chiral products with multiple stereocenters from the same starting materials. Despite progress, new design strategies for diastereodivergent asymmetric catalysis are still highly desirable. Here we report the potency of H-bond donors as the governing factor to tune diastereoselectivity in a highly diastereoselective switchable enantioselective Michael addition of α-azido ketones to nitroolefins. While a newly developed bifunctional tertiary amine, phosphoramide, preferentially afforded syn-adducts, an analogous squaramide catalyst selectively gave anti-adducts. The resulting multifunctional tertiary azides can be converted to spiro-pyrrolidines with four continuous stereocenters in a one-pot operation. Mechanistic studies cast light on the control of diastereoselectivity by H-bond donors. While the squaramide-catalyzed reaction proceeded with a transition state with both squaramide N–H bonds binding to an enolate intermediate, an unprecedented model was proposed for the phosphoramide-mediated reaction wherein an amide N–H bond and an alkylammonium ion formed in situ interact with nitroolefins, with the enolate stabilized by nonclassical C–H⋯O hydrogen-bonding interactions. The Royal Society of Chemistry 2020-03-11 /pmc/articles/PMC8152593/ /pubmed/34122853 http://dx.doi.org/10.1039/d0sc00475h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ding, Pei-Gang
Zhou, Feng
Wang, Xin
Zhao, Qiu-Hua
Yu, Jin-Sheng
Zhou, Jian
H-bond donor-directed switching of diastereoselectivity in the Michael addition of α-azido ketones to nitroolefins
title H-bond donor-directed switching of diastereoselectivity in the Michael addition of α-azido ketones to nitroolefins
title_full H-bond donor-directed switching of diastereoselectivity in the Michael addition of α-azido ketones to nitroolefins
title_fullStr H-bond donor-directed switching of diastereoselectivity in the Michael addition of α-azido ketones to nitroolefins
title_full_unstemmed H-bond donor-directed switching of diastereoselectivity in the Michael addition of α-azido ketones to nitroolefins
title_short H-bond donor-directed switching of diastereoselectivity in the Michael addition of α-azido ketones to nitroolefins
title_sort h-bond donor-directed switching of diastereoselectivity in the michael addition of α-azido ketones to nitroolefins
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8152593/
https://www.ncbi.nlm.nih.gov/pubmed/34122853
http://dx.doi.org/10.1039/d0sc00475h
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