Design and Synthesis of Co‐initiators via Base‐Catalysed Sequential Conjugate Addition: Application in Photoinduced Radical Polymerisation Reaction

Author:

Ahmad Asrar1ORCID,Siddiqui Shakir Ali1ORCID,Mittal Garvisha1ORCID,Sukumar N.12ORCID,Dubey Kshatresh Dutta1ORCID,Kapat Ajoy1ORCID

Affiliation:

1. Department of Chemistry, School of Natural Science Shiv Nadar (Institution of Eminence Deemed to be University) Delhi-NCR, Dadri, Chithera, Gautam Buddha Nagar, Uttar Pradesh 201314 India

2. Current affiliation: Centre for Computational Engineering & Networking School of Artificial Intelligence, Amrita Vishwa Vidyapeetham Coimbatore 641105, Tamil Nadu India

Abstract

AbstractApplications of photochemistry are becoming very popular in modern‐day life due to its operational simplicity, environmentally friendly and economically sustainable nature in comparison to thermochemistry. In particular photoinduced radical polymerisation (PRP) reactions are finding more biological applications and especially in the areas of dental restoration processes, tissue engineering and artificial bone generation. A type‐II photoinitiator and co‐initiator‐promoted PRP turned out to be a cost‐effective protocol, and herein we report the design and synthesis of a new efficient co‐initiator for a PRP reaction via a barrierless sequential conjugate addition reaction. Experimental mechanistic observations have been further complemented by computational data. Time for newly synthesised 1,2‐benzenedithiol (DTH) based co‐initiator promoted polymerisation of urethane dimethacrylate (UDMA, 70 %) and triethylene glycol dimethacrylate (TEGDMA, 30 %) in presence of 450 nm LED (15 W) under the aerobic conditions is 38 seconds. Polymeric material has high glass transition temperature, improved mechanical strength (860 BHN) and longer in‐depth polymerisation (3 cm).

Funder

Shiv Nadar University

Science and Engineering Research Board

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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