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Jean-Christophe Mulatier

Researcher at École normale supérieure de Lyon

Publications -  69
Citations -  1574

Jean-Christophe Mulatier is an academic researcher from École normale supérieure de Lyon. The author has contributed to research in topics: Two-photon absorption & Supramolecular chemistry. The author has an hindex of 24, co-authored 67 publications receiving 1397 citations. Previous affiliations of Jean-Christophe Mulatier include Centre national de la recherche scientifique & Claude Bernard University Lyon 1.

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Monodisperse fluorene oligomers exhibiting strong dipolar coupling interactions

TL;DR: Well-defined fluorene oligomers were prepared step by step using Suzuki and Yamamoto couplings, while absorption and photoluminescence properties evidenced very large dipolar coupling interactions between fluorenes moieties.
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One-step waveguide and optical circuit writing in photopolymerizable materials processed by two-photon absorption

TL;DR: In this paper, stable optical waveguides have been fabricated and compared to the results of numerical simulations, showing the possibility of connecting two optical fibers via a curved guide and to realize Y splitters.
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Modulating the photophysical properties of azamacrocyclic europium complexes with charge-transfer antenna chromophores.

TL;DR: A detailed solvent-dependent photophysical study indicates that this luminescence quenching is not due to the direct coordination of O-H vibrators to the metal center but to the increase of nonradiative processes in a protic solvent induced by an internal isomerization equilibrium.
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Chiral trialkanolamine-based hemicryptophanes: synthesis and oxovanadium complex.

TL;DR: A novel class of chiral hemicryptophane hosts has been synthesized in diastereoisomerically pure form and displayed two pairs of mirror-image CD spectra, which were used to determine their absolute configuration.
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Novel ruthenium(II) and zinc(II) complexes for two-photon absorption related applications

TL;DR: The observation of two-photon absorption (TPA) associated with long-lived metal-to-ligand charge-transfer (MLCT) excited states in the Ru(II)-based chromophores, opens a wide range of applications in the near infrared.