| Literature DB >> 30147439 |
Samantha M Gibson1, Jarryl M D'Oyley1, Joe I Higham1, Kate Sanders1, Victor Laserna1, Abil E Aliev1, Tom D Sheppard1.
Abstract
In this paper we outline how dihalohydration reactions of propargylic alcohols can be used to access a wide variety of useful halogenated building blocks. A novel procedure for dibromohydration of alkynes has been developed, and a selection of dichloro and dibromo diols and cyclic ethers were synthesized. The dihalohydration of homo-propargylic alcohols provides a useful route to 3-halofurans, which were shown to readily undergo cycloaddition reactions under mild conditions. Finally, a novel ring expansion of propargylic alcohols containing a cyclopropylalkyne provides access to halogenated alkenylcyclobutanes.Entities:
Keywords: Alcohols; Alkynes; Halogenation; Heterocycles; Ketones
Year: 2018 PMID: 30147439 PMCID: PMC6099344 DOI: 10.1002/ejoc.201800668
Source DB: PubMed Journal: European J Org Chem ISSN: 1099-0690
Scheme 1Previous work on the diiodohydration and dichlorohydration of alkynols.8
Scheme 2Dibromohydration of propargylic alcohols. [a] 5 equiv. of DBIA were used.
Scheme 3Proposed mechanism for dibromohydration.
Scheme 4Dibromohydration and dichlorohydration of extended alkynols.
Scheme 5Reduction of geminal dihalides to access halogenated diols and cyclic ethers.
Scheme 6Synthesis of 3‐halofurans.
Scheme 7Cycloaddition reactions of 3‐halofurans.
Scheme 8Synthesis of cyclobutanes via ring expansion of propargylic alcohols containing cyclopropylacetylenes.