Pd(II)‐Catalyzed Site‐Selective Cross Coupling Reaction: Synthesis of Highly Fluorescent Aryl−Formyl−Chromenes and its Iminoantipyrine Analogues as Selective AChE Inhibitors

Author:

Govada Grace Victoria1,Pal Sanjivani1,Panjacharam Paranimuthu1,Bhatt Harshil Samir2,Kumar Sanjit3,Lin Chun‐Cheng4,Wang Sheng‐kai4,Reddy Sabbasani Rajasekhara1ORCID

Affiliation:

1. Advanced Catalysis laboratory Vellore Institute of Technology (VIT) Vellore 632014 India

2. Centre for Bio Separation Technology Vellore Institute of Technology (VIT) Vellore 632014 India

3. Department of Biotechnology, School of Interdisciplinary Education and Research Guru Ghasidas Vishwavidyalaya (Central university) Bilaspur India

4. Department of Chemistry National Tsing Hua University Hsinchu 300 Taiwan

Abstract

AbstractA versatile and efficient chemo selective synthesis of 4‐aryl‐3‐formyl‐2H‐chromenes (AFC) was undertaken using Pd‐catalyzed cross‐coupling conditions. The key oxidative transmetalation was successfully applied to a significant range of substitutions on the chromene moiety and aryl ring in Ar(BOH)3, accommodating both electron‐rich and electron‐deficient groups. These π‐extended scaffolds exhibited green‐yellow fluorescence with a large Stokes shift and high quantum yield. Measurement of photophysical properties revealed that the compound with methoxy substitution in the chromene ring, 3t, caused a significant bathochromic shift. The AFCs obtained from this method can be transformed into biologically active 4‐aryl‐3‐iminoantipyrine‐2H‐chromenes (AAC) through functionalization of the formyl chromenes. The AFCs and AACs with methoxy substitutions (3t and 4e) were docked against AChE inhibition, and compound 4e had the lowest binding energy of −11.20 kcal/mol. DFT calculations performed on representative compounds revealed that compound 4e is more reactive than 3t, which is in accordance with the docking studies.

Funder

Vellore Institute of Technology, Chennai

Publisher

Wiley

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