New Isoxazole‐Substituted Aryl Iodides: Metal‐Free Synthesis, Characterization and Catalytic Activity

Author:

Rimi 1,Uttam Bhawna1ORCID,Zhdankin Viktor V.2ORCID,Kumar Ravi1ORCID

Affiliation:

1. Department of Chemistry J. C. Bose University of Science and Technology, YMCA Mathura Road, Sector-6 Faridabad 121006 Haryana India

2. Department of Chemistry and Biochemistry University of Minnesota Duluth Duluth Minnesota 55812 United States

Abstract

AbstractA series of new isoxazole‐substituted aryl iodides 1 a1 d have been synthesized by DIB‐mediated [3+2] cycloaddition reaction of 2‐iodo‐1,3‐bis(prop‐2‐yn‐1‐yloxy) benzene (4) with corresponding benzaldehyde oximes 5 a5 d. Structure of the synthesized aryl iodides 1 were characterized by IR, 1H NMR, 13C NMR and HRMS. The structure of 1 a was also confirmed by single‐crystal X‐ray crystallography. Further, catalytic activity of iodoarenes 1 a1 d was screened for the oxidation of hydroquinones and sulfides. On oxidation using aryl iodides 1 with m‐CPBA as terminal oxidant, hydroquinones afforded benzoquinones while sulfides gave corresponding sulfoxides in good to excellent yields. Iodoarene 1 b showed the best catalytic activity for the oxidation of sulfides and hydroquinones. Moreover, iodoarene 1 b, was also utilized for α‐oxytosylation of acetophenones.

Publisher

Wiley

Subject

Organic Chemistry,Physical and Theoretical Chemistry

Reference48 articles.

1.  

2. T. Wirth Hypervalent Iodine Chemistry: Modern Developments in Organic Synthesis. [In: Top. Curr. Chem. 2016 p. 373] Springer-Verlag 2016;

3. V. V. Zhdankin Hypervalent Iodine Chemistry: Preparation Structure and Synthetic Applications of Polyvalent Iodine Compounds Wiley 2013.

4.  

5. Advances in Synthetic Applications of Hypervalent Iodine Compounds

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