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La chiralité à la lumière des matériaux moléculaires, une nouvelle direction pour l'électronique organique

Abstract : Ubiquitous in our world, the property of chirality at the molecular level is a crucial element in drug discovery and development, owing to its fundamental role in biological processes. More recently, this molecular dissymmetry[1] has been extended to the research domain of molecular materials, providing them with innovative properties such as a specific interaction with a circularly polarized light. Given the potential of the latter in several research domains including display applications, cryptography, bio-imaging and spintronics, chiral molecular materials have recently attracted considerable attention as innovative CPL emitters. This latter aspect is notably illustrated in this article with selected examples of -conjugated helical architectures, investigated within the 'Organométalliques : Matériaux Moléculaires et Catalyse' team (OMC) at the Institut des Sciences Chimiques de Rennes (UMR 6226 CNRS - Université de Rennes), opening new opportunities in “chiral” organic electronics.
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https://hal-univ-rennes1.archives-ouvertes.fr/hal-02999830
Contributor : Ludovic Favereau <>
Submitted on : Wednesday, November 18, 2020 - 8:38:01 PM
Last modification on : Tuesday, November 24, 2020 - 3:10:52 AM

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  • HAL Id : hal-02999830, version 1

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Kais Dhbaibi, Sitthichok Kasemthaveechok, Jeanne Crassous, Ludovic Favereau. La chiralité à la lumière des matériaux moléculaires, une nouvelle direction pour l'électronique organique. L'Actualité Chimique, Société chimique de France, 2020, 454, pp.49-57. ⟨hal-02999830⟩

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