The O-Directed Free Radical Hydrostannation of Propargyloxy Dialkyl Acetylenes with Ph3 SnH/cat. Et3 B. A Refutal of the Stannylvinyl Cation Mechanism.
Chem Rec
; 19(2-3): 238-319, 2019 Feb.
Article
em En
| MEDLINE
| ID: mdl-30411498
In this Personal Account, we will give an overview of the room temperature O-directed free radical hydrostannation reaction of propargylically-oxygenated dialkyl acetylenes with Ph3 SnH and catalytic Et3 B/O2 in PhMe. We will show how this excellent reaction evolved, and how it has since been used to stereoselectively construct the complex trisubstituted olefin regions of three synthetically challenging natural product targets: (+)-pumiliotoxin B, (-)-(3R)-inthomycin C, and (+)-acutiphycin. Throughout this Account, we will pay special attention to highlighting important facets of the I-SnPh3 exchange processes that have so far been used in the various different steric settings that we have addressed, and we will document the range of cross coupling protocols that have critically underpinned the first successful applications of this method in complex natural product total synthesis. Last, but not least, we will comment on various aspects of the O-directed free radical hydrostannation mechanism that have been published by ourselves, and others, and we will discuss all of the factors that can contribute to the observed stereo-and regio-chemical outcomes. We will also challenge and refute the recent non-directed stannylvinyl cation mechanism put forward by Organ, Oderinde and Froese for our reaction, and we will show how it cannot be operating in these exclusively free radical hydrostannations.
Allylic 1,3-strain and 1,2-strain; Internal Ligand Enhanced Radicalophilicity; O-Directed Free Radical Hydrostannation with Ph3SnH/cat. Et3B; Ph3Sn radicals have higher electron affinity; Propargylically-Oxygenated Alkyl Acetylenes; Stannylvinyl Radical; The magnitudes of polar solvent rate accelerations observed for genuinely ionic reaction mechanisms; Trisubstituted Stannylvinyl Radical H-Atom Abstraction; Vinylperoxy radical; Vinylstannane isomerisation; ß-Stannylvinyl cation
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MEDLINE
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En
Ano de publicação:
2019
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Article