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<dc:title xml:lang="fr">Science moléculaire et matériaux bi-dimensionnels : système hybride pour opto-électroniques</dc:title>
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<dc:subject xml:lang="fr">Transistor à effet de champ</dc:subject>
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<dc:subject xml:lang="en">Molecimar functionalization</dc:subject>
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<dcterms:abstract xml:lang="fr">Cette thèse étudie principalement le mécanisme des interactions entre les molécules et les matériaux semi-conducteurs bidimensionnels (2D) avec leurs applications associées en électronique. Les travaux de recherche commencent par l'étude de l'effet des solvants organiques sur les propriétés optiques et électroniques des dichalcogénures de métaux de transition (TMD) 2D et du phosphore noir, suivant par la fonctionnalisation du séléniure d'indium (InSe) 2D avec des molécules tensioactifs ioniques et les applications dans les photodétecteurs. La recherche se termine par la création de potentiels périodiques à l'aide de ligands pyridiniques fonctionnalisés axialement sur des phtalocyanines métalliques physisorbées sur des TMD 2D. Ces ligands comprennent les pyridines simplement fonctionnalisées et les pyridines avec de l'azobenzène photochromique pour induire un dopage sur des matériaux 2D.Les projets interdisciplinaires concernent la chimie physique, la physique du solide, la chimie supramoléculaire, la science des matériaux, la nanoélectronique, la chimie computationnelle et la photochimie.</dcterms:abstract>
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