Urea‐Promoted Neat Synthesis of Fused Dihydroisoquinolines and Disubstituted Pyridines: A Mechanistic Observation with Molecular‐Sensing Studies

Author:

Azad Sk Abulkalam12,Bera Anirban1,Samanta Jayanta3,Sepay Nayim4,Jana Rathin5,Pal Chandan Kumar1,Molla Mijanur Rahaman2ORCID,Maiti Debabrata6ORCID,Samanta Shubhankar1ORCID

Affiliation:

1. Department of Chemistry Bidhannagar College Salt Lake, Sector - I Kolkata 700064 India

2. Department of Chemistry University of Calcutta Acharya Prafulla Chandra Road Kolkata 700009 India

3. Department of Chemistry College of Engineering and Technology SRM Institute of Science and Technology Kattankulathur Tamil Nadu 603203 India

4. Department of Chemistry Lady Brabourne College Kolkata 700 017 India

5. Department of Chemistry Shahid Matangini Hazra Govt. General Degree College for Women West Bengal India

6. Department of Chemistry Indian Institute of Technology Bombay Powai Mumbai Maharashtra 400076 India

Abstract

AbstractAn efficient and short synthesis of fused dihydroisoquinolines, diaryl substituted pyridine derivatives in good to high yields has been established by using an environmentally safe, solvent‐metal‐oxidant‐free tandem approach. In this article, we discuss how the electrocyclic reaction is more pronounced in the solid phase in the presence of urea, whereas the typical aza‐Michael addition is more prominent in presence of arylamine in the solution phase for 3‐(2‐formylcycloalkenyl)acrylic ester derivative substrates. The wide range of substrates and urea‐promoted neat synthesis made our approach more significant in medical and also analytical science. Moreover, an isoquinoline alkaloid decumbenine B analogue has been synthesized by using our newly developed neat methodology. We have also investigated the photophysical properties of the synthesized fused dihydroisoquinoline derivatives. One of the synthesized molecules was used as a sensor for the selective detection of toxic picric acid. Therefore, the effective neat synthesis and molecular sensing applications of these compounds made our approach more exciting in the field of heterocyclic chemistry.

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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