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Analysis of Association Constant for Ground-State Dye-Electron Acceptor Complex of Photoinitiator Systems and the Association Constant Effect on the Kinetics of Visible-Light-Induced Polymerizations

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TLDR
It is concluded that the observed kinetic differences arise from the different association constant values of the ground state dye-acceptor complex, resulting in back electron transfer reaction.
Abstract
We investigated the formation of ground state donor/acceptor complexes between xanthene dyes (rose Bengal (RB) and fluorescein (FL)) and a diphenyl iodonium salt (DPI) which is dissolved in 2-hydroxyethyl methacrylate (HEMA) monomer. To characterize the association constant of the complex, we have suggested a new analysis model based upon the Benesi-Hildebrand model. Because the assumption of the original Benesi-Hildebrand model is that the absorption bands are due only to the presence of the complex and that the absorption by the free component is negligible; the model cannot be applied to our systems, which is a dye-based initiator system. For each dye, the molar absorptivity of the ground state complex was evaluated as a function of wavelength and this analysis confirmed the validity of the modified Benesi-Hildebrand model. In addition, we observed the RB/DPI photoinitiator system failed to produce a perceptible polymerization rate but the FL/DPI photoinitiator system provided very high rates of polymerization. Based upon the association constant for these complexes, we concluded that the observed kinetic differences arise from the different association constant values of the ground state dye-acceptor complex, resulting in back electron transfer reaction.

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Journal ArticleDOI

Photoinduced Electron Transfer Reactions for Macromolecular Syntheses

TL;DR: This review paper provides a comprehensive account of the fundamentals and applications of photoinduced electron transfer reactions in polymer synthesis, including traditional photopolymerization methods, namely free radical and cationic polymerizations, and step-growth polymerizations involving electron transfer processes are included.
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New polymer-chemical developments in clinical dental polymer materials: Enamel–dentin adhesives and restorative composites

TL;DR: New bisacrylamide cross-linkers with improved hydrolytic stability and new strongly acidic polymerizable phosphonic acids and dihydrogen phosphates, in combination with the implementation of novel application devices, have significantly improved the performance of the current enamel–dentin adhesives.
Journal ArticleDOI

Xanthene dyes/amine as photoinitiators of radical polymerization: a comparative and photochemical study in aqueous medium

TL;DR: In this article, the efficiency of several xanthene dyes as photoinitiators of the free radical polymerization in aqueous medium was evaluated, and the results showed that dyes with triplet quantum yield higher than 0.1 present similar efficiencies, independently of their different chemical structure.
Journal ArticleDOI

Visible-Light Organic Photocatalysis for Latent Radical-Initiated Polymerization via 2e–/1H+ Transfers: Initiation with Parallels to Photosynthesis

TL;DR: A robust approach for photocatalysis-based energy harvesting and extended release in the dark enables temporally controlled redox initiation of polymer syntheses under low-intensity short exposure conditions and permits visible-light-mediated synthesis of polymers at least 1 order of magnitude thicker than achievable with conventional photoinitiated formulations and irradiation regimes.
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A monocomponent bifunctional benzophenone–carbazole type II photoinitiator for LED photoinitiating systems

TL;DR: In this paper, a bifunctional benzophenone-carbazole-based photoinitiator BPC was designed from its molecular structure viewpoint, which can efficiently initiate the free radical photopolymerization (FRP) of acrylates without addition of any extra hydrogen donors demonstrating a monocomponent Type II behavior.
References
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Journal ArticleDOI

A Spectrophotometric Investigation of the Interaction of Iodine with Aromatic Hydrocarbons

TL;DR: In this paper, it was shown that the position of the absorption bands of iodine solutions in the visible region moved gradually from violet to brown, the shift being only small in the case of benzene in which the color of iodine is a red-violet.
Journal ArticleDOI

Kinetics of Fluorescence Quenching by Electron and H‐Atom Transfer

TL;DR: In this article, the rate constants of 60 typical electron donor-acceptor systems have been measured in de-oxygenated acetonitrile and are shown to be correlated with the free enthalpy change, ΔG23, involved in the actual electron transfer process.
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