PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
October 2, 2017Journal of the American Chemical Society32 citations

A Boron Protecting Group Strategy for 1,2-Azaborines

View Full Paper
ABAndrew W. BaggettSLShih‐Yuan Liu

Key Points

  • To establish a boron protecting group strategy that permits synthetic transformations incompatible with reactive B-alkoxide moieties in 1,2-azaborines.
  • Treated B-alkyl and B-aryl 1,2-azaborines with molecular oxygen or di-tert-butylperoxide, an alcohol, and a copper(I) catalyst.
  • Coupled N-deprotonated 1,2-azaborine epoxide ring opening with an intramolecular boron deprotection cascade.
  • Achieved selective exchange of B-alkyl and B-aryl protecting groups for B-alkoxide fragments under mild conditions.
  • Enabled the synthesis of a previously inaccessible BN isostere of ethylbenzene alongside the first BN isosteres of dihydrobenzofurans and benzofurans.

Abstract

Upon reaction with either molecular oxygen or di-tert-butylperoxide in the presence of a simple copper(I) salt and an alcohol, a range of 1,2-azaborines readily exchange B-alkyl or B-aryl moieties for B-alkoxide fragments. This transformation allows alkyl and aryl groups to serve for the first time as removable protecting groups for the boron position of 1,2-azaborines during reactions that are not compatible with the easily modifiable B-alkoxide moiety. This reaction can be applied to synthesize a previously inaccessible BN isostere of ethylbenzene, a compound of interest in biomedical research. A sequence of epoxide ring opening using N-deprotonated 1,2-azaborines followed by an intramolecular version of the boron deprotection reaction can be applied to access the first examples of BN isosteres of dihydrobenzofurans and benzofurans, classes of compounds that are important to medicinal chemistry and natural product synthesis.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Baggett et al. (2017) studied this question.

synapsesocial.com/papers/69fd6326ea4a61241c5d2047https://doi.org/10.1021/jacs.7b09491
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1BN versus CC: How Similar Are They?2007 · 505 citations
  2. 2Organoboron Compounds. IV. Reaction of Tri-n-butylborine with Peroxides and with Oxygen. Mechanism of Autoöxidation1938 · 83 citations
  3. 3Reaction of CuI with Dialkyl Peroxides: CuII-Alkoxides, Alkoxy Radicals, and Catalytic C–H Etherification2012 · 163 citations
  4. 4A Stoichiometric Aromatic CH Borylation Catalyzed by Iridium( I )/2,2′‐Bipyridine Complexes at Room Temperature2002 · 525 citations
  5. 5Copper-catalyzed coupling reaction of unactivated secondary alkyl iodides with alkyl Grignard reagents in the presence of 1,3-butadiene as an effective additive2012 · 54 citations