One-pot access to 2-oxazolines via a Castro-Stephens coupling and intramolecular cyclization

Author:

Nighot Dnyaneshwar1,Jain Arvind Kumar1,Ali Imran2,Rawat Varun3

Affiliation:

1. Department of Chemistry, Basic and Applied Sciences, Galgotias University Utter Pradesh-Greater Noida, Uttar Pradesh-201308, India

2. Department of Chemistry, Jamia Millia Islamia, New Delhi-110025, India

3. Amity School of Applied Sciences, Amity University Haryana, Gurugram-122413, India

Abstract

Aim: Here, we have reported easy one-pot access to a series of oxazolines using a modified Castro-Stephens coupling protocol. Background: 2-oxazolines have been shown to have significant biological activity and wide-ranging applications in organic chemistry. These properties make oxazolines as heterocyclic compounds of immense importance. Objective: The objective of this study is to synthesize oxazoline derivatives via an economical and one-pot protocol. Method: 2-oxazoline has been synthesized through Cu-powder mediated Castro-Stephens coupling and intramolecular cyclization route. The mechanism involves a rearrangement in which one of the oxygen from the N-acylamino alcohol group is liberated as water and then transferred to alkyne functionality to form 2-oxazoline derivatives. The oxazolines were characterized by NMR, mass, and XRD studies. Result: The protocol is economically viable and uses readily available Cu-powder along with DMF for cross-coupling and cyclization steps.

Publisher

Bentham Science Publishers Ltd.

Subject

Organic Chemistry,Analytical Chemistry,Catalysis

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