Please use this identifier to cite or link to this item: https://doi.org/10.1039/c7sc02176c
Title: Catalyst-controlled regioselectivity in phosphine catalysis: The synthesis of spirocyclic benzofuranones via regiodivergent [3 + 2] annulations of aurones and an allenoate
Authors: Ni, H 
Yu, Z
Yao, W
Lan, Y
Ullah, N
Lu, Y 
Keywords: Catalysts
Enantioselectivity
Hydrogen bonds
Peptides
Phosphorus compounds
Alkyl substitution
Annulation products
DFT calculation
Di-peptides
Distortion energy
Hydrogen bonding interactions
Transition state
Regioselectivity
Issue Date: 2017
Publisher: Royal Society of Chemistry
Citation: Ni, H, Yu, Z, Yao, W, Lan, Y, Ullah, N, Lu, Y (2017). Catalyst-controlled regioselectivity in phosphine catalysis: The synthesis of spirocyclic benzofuranones via regiodivergent [3 + 2] annulations of aurones and an allenoate. Chemical Science 8 (8) : 5699-5704. ScholarBank@NUS Repository. https://doi.org/10.1039/c7sc02176c
Abstract: Catalyst-controlled regiodivergent [3 + 2] annulations of aurones and allenoates have been developed. When a dipeptide phosphine catalyst with an l-d- configuration was employed, ?-selective [3 + 2] annulation products could be obtained with good regioselectivities and enantioselectivities. With the employment of l-l- dipeptide phosphines, ?-selective annulation products could be selectively obtained with excellent enantioselectivities. By simply tuning the catalyst configurations, a wide range of ?-selective or ?-selective spirocyclic benzofuranones with either aryl or alkyl substitutions could be readily prepared. DFT calculations suggest that the conformation of the dipeptide phosphines influences the hydrogen bonding interactions or the distortion energy, resulting in delicate energy differentiation in the transition states, and accounting for the observed regioselectivity. © The Royal Society of Chemistry 2017.
Source Title: Chemical Science
URI: https://scholarbank.nus.edu.sg/handle/10635/174895
ISSN: 20416520
DOI: 10.1039/c7sc02176c
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