Diastereoselective Dearomative 1,3-Dipolar Cycloaddition of Bicyclobutanes with Pyridinium Ylides: A Modular Approach to Multisubstituted Azabicyclo[3.1.1]heptanes

01 August 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

We describe a formal 1,3-dipolar cycloaddition between bicyclobutanes and pyridinium ylides to form azabicycloheptanes via diastereoselective pyridine dearomatization. Microscale highthroughput experimentation led to identification of conditions affording high yield and stereoselectivity without the need for catalysis. These reactions proceed using as-received reagents and solvents under ambient atmosphere. The resulting ring-fused azabicyclo[3.1.1]heptanes have diverse synthetic handles for further transformations, making them potentially valuable scaffolds for the design of Csp3-rich drug candidates. We also demonstrate a diastereoselective photochemical skeletal rearrangement to give a 1,1,3,3-tetrasubstitued cyclobutane.

Keywords

dearomatization
cycloaddition
heterocycles
stereoselective
bicyclobutane
azabicycloheptane
bioisostere

Supplementary materials

Title
Description
Actions
Title
Supporting Information
Description
Detailed experimental procedures, screening data, characterization data/spectra, and X-ray crystallography details.
Actions
Title
3c CIF
Description
Crystallographic information file for solid state structure of compound 3c
Actions
Title
4b CIF
Description
Crystallographic information file for solid state structure of compound 4b
Actions

Comments

Comments are not moderated before they are posted, but they can be removed by the site moderators if they are found to be in contravention of our Commenting Policy [opens in a new tab] - please read this policy before you post. Comments should be used for scholarly discussion of the content in question. You can find more information about how to use the commenting feature here [opens in a new tab] .
This site is protected by reCAPTCHA and the Google Privacy Policy [opens in a new tab] and Terms of Service [opens in a new tab] apply.