Photoinitiation Mechanisms of Novel Phenothiazine‐Based Oxime and Oxime Esters Acting as Visible Light Sensitive Type I and Multicomponent Photoinitiators

Author:

Noon Adel123,Hammoud Fatima12,Graff Bernadette12,Hamieh Tayssir34,Toufaily Joumana3,Morlet‐Savary Fabrice12,Schmitt Michael12,Bui Thanh‐Tuan5,Rico Alexandre6,Goubard Fabrice5,Péralta Sébastien5,Dumur Frédéric567,Lalevée Jacques12ORCID

Affiliation:

1. CNRS IS2M UMR 7361 Université de Haute‐Alsace Mulhouse F‐68100 France

2. Université de Strasbourg Strasbourg France

3. Laboratory of Materials, Catalysis, Environment and Analytical Methods (MCEMA) Faculty of Sciences Doctoral School of Sciences and Technology (EDST) Lebanese University Beirut 6573‐14 Lebanon

4. Faculty of Science and Engineering Maastricht University P.O. Box 616 Maastricht MD 6200 Netherlands

5. LPPI CY Cergy Paris Université Cergy F‐95000 France

6. CNRS ICR UMR 7273 Aix Marseille University Marseille F‐13397 France

7. CY Cergy Paris Université CY Advanced Studies Cergy F‐95000 France

Abstract

AbstractIn this work, three new photoinitiators, based on the phenothiazine scaffold as a chromophore and potentially bearing the oxime ester functionality as an initiating group are designed and synthesized for the free radical polymerization of acrylates, the cationic polymerization of epoxides, and the formation of interpenetrated polymer networks upon irradiation with a light emitting diode emitting at 405 nm. These phenothiazine‐based oxime and oxime esters revealed impressive photoinitiation ability manifested by excellent polymerization rates and high final reactive function conversions. Significantly, they can be used as both; one‐component (Type I) and two‐component photoinitiating systems. Photoinitiation mechanisms through which reactive species are produced are investigated by means of different complementary techniques including real‐time Fourier transform infrared spectroscopy, UV–visible absorption spectroscopy, electron spin resonance spectroscopy, fluorescence (steady state and time resolved), cyclic voltammetry, and molecular modeling calculations. Thermal initiation behavior of the different oxime esters is also studied by using differential scanning calorimetry, highlighting their dual thermal/photochemical initiation ability. Finally, 3D printed objects are successfully fabricated by conducting both direct laser writing and 3D printing experiments.

Publisher

Wiley

Subject

Industrial and Manufacturing Engineering,Mechanics of Materials,General Materials Science

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