4.8 Article

Carbene-catalyzed atroposelective synthesis of axially chiral styrenes

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NATURE COMMUNICATIONS
卷 13, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-021-27771-x

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资金

  1. Singapore National Research Foundation [NRF-NRFI2016-06, NRF-CRP22-2019-0002]
  2. Ministry of Education, Singapore, under its MOE AcRF Tier 1 Award [RG7/20, RG5/19]
  3. MOE AcRF Tier 2 [MOE2019-T2-2-117]
  4. MOE AcRF Tier 3 Award [MOE2018-T3-1-003]
  5. Nanyang Research Award Grant
  6. Chair Professorship Grant
  7. Nanyang Technological University
  8. National Natural Science Foundation of China [21772029, 21801051, 21961006, 22071036, 32172459, 81360589]
  9. 10 Talent Plan (Shicengci) of Guizhou Province [[2016]5649]
  10. Science and Technology Department of Guizhou Province [[2019]1020, Qiankehejichu-ZK[2021]Key033]
  11. Program of Introducing Talents of Discipline to Universities of China (111 Program) at Guizhou University [D20023]
  12. Frontiers Science Center for Asymmetric Synthesis and Medicinal Molecules, Department of Education, Guizhou Province [(2020)004]
  13. Guizhou Province First-Class Disciplines Projectm Guizhou University of Traditional Chinese Medicine [(Yiliu Xueke Jianshe Xiangmu)-GNYL(2017) 008]
  14. Guizhou University

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In this study, a chiral solution utilizing N-heterocyclic carbene (NHC) catalyst was developed for the preparation of axially chiral styrenes with high enantioselectivity and excellent yields. The sulfone and carboxylic ester moieties in the styrenes are common functional groups in bioactive molecules and asymmetric catalysis.
Axially chiral styrenes bearing a chiral axis between a sterically non-congested acyclic alkene and an aryl ring are difficult to prepare due to low rotational barrier of the axis. Disclosed here is an N-heterocyclic carbene (NHC) catalytic asymmetric solution to this problem. Our reaction involves ynals, sulfinic acids, and phenols as the substrates with an NHC as the catalyst. Key steps involve selective 1,4-addition of sulfinic anion to acetylenic acylazolium intermediate and sequential E-selective protonation to set up the chiral axis. Our reaction affords axially chiral styrenes bearing a chiral axis as the product with up to > 99:1 e.r., > 20:1 E/Z selectivity, and excellent yields. The sulfone and carboxylic ester moieties in our styrene products are common moieties in bioactive molecules and asymmetric catalysis.

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