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Nitro-Carbazole Based Oxime Esters as Dual Photo/Thermal Initiators for 3D Printing and Composite Preparation. | LitMetric

AI Article Synopsis

  • - A new series of photoinitiators based on a nitrocarbazole scaffold is developed for visible light photopolymerization, specifically three oxime esters (OXE-M, OXE-V, OXE-P) with distinct terminal groups.
  • - OXE-M shows superior performance in initiating polymerization with acrylate monomers compared to standard phosphine-oxide initiators when exposed to 405 nm LED light.
  • - The study explores the chemical mechanisms behind the polymerization process and demonstrates the practical application of OXE-M in dual photo/thermal curing for carbon fiber composites, addressing challenges with light penetration.

Article Abstract

A series of Type I photoinitiators (PIs) based on a nitrocarbazole scaffold are developed and examined for the first time as photoinitiators for visible light photopolymerization. Three oxime esters (OXE-M, OXE-V, OXE-P) varying by the terminal groups (acetyl, acryloyl and benzoyl) attached via the oxime ester group are originally prepared. As a result of this, the three PIs exhibit excellent photoinitiation abilities in the presence of acrylate monomers upon LED@ 405 nm irradiation. Markedly, OXE-M exhibits a better performance than the benchmark Type I phosphine-oxide (diphenyl(2,4,6-trimethylbenzoyl)phosphine oxide TPO). Chemical mechanisms supporting the polymerization process with these PIs are investigated by steady state photolysis, molecular orbital calculations and real-time Fourier transformed infrared spectroscopy. After the cleavage of N─O bond and decarboxylation, free radicals are generated to initiate the free radical polymerization efficiently. Free radical photopolymerization of OXE-M is applied in direct laser write and 3D printing. Interestingly, OXE-M exhibits thermal initiation behaviors in monomers and can be used as dual photo and thermal initiators. The highly opaque feature of carbon fibers makes it difficult for light penetration, so dual photo/thermal curing are used here to prepare carbon fiber composites.

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Source
http://dx.doi.org/10.1002/marc.202100207DOI Listing

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