Preparation of nitro‐phenothiazine‐based oxime esters as dual photo/thermal initiators for 3D printing

Author:

Zhang Xiaoxiang123,Peng Xiaotong4,Zhu Di4,Zhang Yijun23,Le Dot Marie23,Ozen Serife23,Schmitt Michael23,Morlet‐Savary Fabrice23,Xiao Pu4,Dumur Frédéric5,Lalevée Jacques23ORCID

Affiliation:

1. School of Textiles Zhongyuan University of Technology Zhengzhou China

2. Université de Haute‐Alsace CNRS, IS2M UMR 7361 Mulhouse France

3. Université de Strasbourg France

4. Research School of Chemistry Australian National University Canberra ACT Australia

5. Aix Marseille Univ CNRS, ICR, UMR 7273 Marseille France

Abstract

AbstractNowadays, photopolymerization has spanned across all academic and industrial applications due to its appealing features such as energy saving, environmentally‐friendly polymerization conditions, high monomer conversions, rapid polymerization kinetics and so on. Photoinitiator (PI), as a crucial component of the photoinitiating system (PIS) are capable of interacting with light efficiently, enabling to generate initiating species in mono or multicomponent systems. In this work, 13 phenothiazine‐based oxime esters (OXEs) (never reported before) were synthesized and their photoinitiation abilities for the free radical photopolymerization (FRP) of acrylates were examined upon irradiation with LED@405 nm. Parallel to their photochemical reactivities, their abilities to initiate thermal polymerization processes were also investigated. Finally, these OXEs exhibited excellent photo/thermal initiation performances, demonstrating their dual initiation properties. Phenothiazine‐based oxime esters can be used as PIs in 3D printing as well as thermal initiator in the manufacturing of carbon fiber composites.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry

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