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X-ORIGINAL-URL:https://www.chimieparistech.psl.eu
X-WR-CALDESC:Évènements pour Chimie ParisTech - PSL
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DTSTART:20261025T010000
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20250405T080000
DTEND;TZID=Europe/Paris:20250621T170000
DTSTAMP:20250331T093809Z
CREATED:20241003T170619Z
LAST-MODIFIED:20250331T093809Z
UID:25964-1743840000-1750525200@www.chimieparistech.psl.eu
SUMMARY:Certificat H2 - Maîtriser les technologies de l’hydrogène et en déployer les usages
DESCRIPTION:Participez à notre Formation Continue conjointe entre Mines Paris-PSL\, Dauphine Paris-PSL et l’école. \nUn parcours certifiant pour identifier le potentiel et les opportunités de l’hydrogène comme vecteur énergétique. \nEn savoir plus ici
URL:https://www.chimieparistech.psl.eu/evenement-agenda/certificat-h2-maitriser-les-technologies-de-lhydrogene-et-en-deployer-les-usages/
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20250603T080000
DTEND;TZID=Europe/Paris:20250606T170000
DTSTAMP:20250210T093309Z
CREATED:20250210T093248Z
LAST-MODIFIED:20250210T093309Z
UID:26582-1748937600-1749229200@www.chimieparistech.psl.eu
SUMMARY:Stage de Formation Continue : Calculs de spéciation en solution et aux interfaces
DESCRIPTION:Objectifs :  Ce stage vise à familiariser les participants à l’utilisation de logiciels de spéciation d’espèces en solution et adsorbées. Il est structuré en 3 modules consistant en (1) une introduction à l’utilisation du logiciel PHREEQC pour la spéciation des ions et des solides\, (2) une présentation des différents modèles de complexation de surface et d’échanges d’ions\, et (3) la simulation du transport réactif. Une partie importante de la formation sera consacrée à l’utilisation de logiciels. \n\n\n\n\n\n\n\nIntervenants: Romain Dagnelie (CEA\, Université Paris- Saclay)\, Annette Hofmann (LOG – Univ. Lille)\, Grégory Lefèvre (IRCP – Chimie ParisTech-PSL)\, Rémi Marsac (IPGP). \nCalendrier : Formation du 3 au 6 juin 2025 \nPublic concerné : Chercheurs et doctorants souhaitant se former ou se perfectionner sur les calculs de spéciation. La connaissance des bases de la chimie en solution est requise. \n \nTéléchargez ici le formulaire d’inscription de la formation continue modelisationspeciationparis2025 \n 
URL:https://www.chimieparistech.psl.eu/evenement-agenda/stage-de-formation-continue-calculs-de-speciation-en-solution-et-aux-interfaces-2/
LOCATION:Chimie ParisTech – PSL\, 11\, rue Pierre et Marie Curie\, Paris\, 75005\, France
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DTSTART;TZID=Europe/Paris:20250606T100000
DTEND;TZID=Europe/Paris:20250606T120000
DTSTAMP:20250603T084136Z
CREATED:20250603T084136Z
LAST-MODIFIED:20250603T084136Z
UID:27366-1749204000-1749211200@www.chimieparistech.psl.eu
SUMMARY:Séminaire Programme Gradué Chimie PSL
DESCRIPTION:June 6 – 10 am – Amphi Charpak Emulsion-Templated Synthesis of Functional Microcapsules Using Droplet Microfluidics Hyomin Lee Department of Chemical Engineering\, Pohang University of Science and Technology\, Pohang\, Korea.  \nMicrofluidically generated emulsions provide a powerful platform for the synthesis of structurally and compositionally tunable microcapsules\, offering advanced capabilities in the encapsulation\, retention\, and controlled release of functional materials. By precisely controlling multi-phase flows and fluid– fluid interfacial properties\, we exploit complex emulsions—particularly double and triple emulsions— as versatile templates for engineering novel microcapsule systems. In particular\, we develop fluorocarbon oil-based triple emulsions featuring an ultrathin intermediate layer that physically separates the inner cargo from the outer polymeric shell\, enabling high retention of challenging actives. Furthermore\, by harnessing electrostatic complexation between oppositely charged surfactants at the emulsion interfaces\, we demonstrate a robust and generalizable approach to stabilize these emulsions and expand microcapsule diversity without the need for intricate surfactant synthesis or spreading coefficient control. This platform allows for multiple solidification strategies— including polymerization\, freezing\, and solvent extraction—offering a true degree of freedom in capsule design for applications in drug delivery\, cosmetics\, and food. \nJune 6 – 10:35 am – Amphi Charpak Particle Adhesion on Thin Liquid Layer J. Parka\, C. S. Moona\, J. T. Phamb\, H.-J. Buttc\, and S. Wooha\na Department of Chemical Engineering Chung-Ang University\, Korea\nb Department of Chemical Engineering\, University of Cincinnati\, US\nc Max Planck Institute for Polymer Research\, Germany \nDust filters with small pores have been worldwide used to clean air and now are everywhere in our daily life. Dust\, also called particulate matter (PM)\, are captured at the pore of the filters\, therefore smaller pores result in higher PM capturing efficiency. However\, air becomes more difficult to pass through the filter as the pores get smaller\, which decreases the air permeability and increases the air pressure drop across the filter. This dilemma\, caused by the low adhesion of solid PMs to the dry solid surface of the filters\, has been one of the most important issue to be overcome on dry dust filter for several decades. Here\, inspired by human nose filtering system with thin mucus coated nasal hairs\, we create a dry dust filter having a thin non-volatile liquid layer at the surface of the pores. The strong adhesion of PM on liquid thin film improves the PM capturing efficiency without affecting the air permeability of the filter. The liquid thin film coated filter particularly exhibits outstanding dust filtering capability at fast speed filtering system with no re-dispersion of captured PMs. In addition\, the suppressed PMs re-dispersion allows a new bi-directional dust filtering. The Particle Removing Oil-coated Filter (PRO) filter proposes a new paradigm of dust filtering and opens a new door for fast and efficient air cleaning. \nJune 6 – 11:25 am – Amphi Charpak\, Protective Polymer Coatings on Silicon Anodes\, Gi-Ra Yi\, Department of Chemical Engineering\, Pohang University of Science and Technology\, Pohang\, Korea.  \nSilicon (Si) anodes are considered a promising next-generation high-capacity anode material due to their theoretical specific capacity of approximately 4\,200 mAh/g\, which is more than ten times that of conventional graphite. However\, their practical application is significantly hindered by a drastic volume expansion of up to 300% during lithiation and delithiation\, leading to severe structural instability\, rapid capacity fading\, and short cycle life. Furthermore\, Si-based anodes are known to exhibit poor thermal stability under high-temperature or high-rate cycling conditions\, making them susceptible to safety issues such as thermal runaway and fire hazards. To address these challenges\, surface coating technologies using polymer thin films have been developed to stabilize the Si particle surface. In particular\, chemically crosslinked polymer coatings have been introduced to enhance long- term cycling stability. This presentation will introduce the design and performance characteristics of Si nanoparticle-based anode materials coated with polymer thin films\, as well as a polymer gel electrolyte system developed in conjunction. Finally\, we will discuss an in-situ formation method for flame-retardant polymer coatings\, designed to mitigate abnormal temperature increases during abuse conditions. This approach aims to capture radicals generated by the breakdown of the solid electrolyte interphase (SEI)\, thereby improving battery safety under extreme conditions. \n1. Journal of Materials Chemistry A\, 13(7)\, 5213-5219(2025).\n2. Journal of Materials Chemistry A 11\, 1676-1683 (2023).\n3. Applied Surface Science\, 571\, 151294 (2022).\n4. ACS Energy Letters 3(9)\, 2522-2258 (2018).
URL:https://www.chimieparistech.psl.eu/evenement-agenda/seminaire-programme-gradue-chimie-psl-147/
LOCATION:amphi Charpak\, ESPCI Paris-PSL
CATEGORIES:Séminaire
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20250606T170000
DTEND;TZID=Europe/Paris:20250606T190000
DTSTAMP:20250424T114632Z
CREATED:20250424T112314Z
LAST-MODIFIED:20250424T114632Z
UID:27113-1749229200-1749236400@www.chimieparistech.psl.eu
SUMMARY:Cérémonie des docteurs PSL 2024
DESCRIPTION:La cérémonie se tiendra en présence de El Mouhoub Mouhoud\, président de l’Université PSL\, de Bruno Bouchard\, président de l’Université Paris Dauphine – PSL et des directeurs des établissements-composantes\, à l’amphithéâtre Edgar Faure de l’Université Paris Dauphine – PSL\, Place du Maréchal de Lattre de Tassigny Paris XVIe et sera suivie d’un cocktail. \n \nEvènement réservé à la communauté PSL.
URL:https://www.chimieparistech.psl.eu/evenement-agenda/ceremonie-des-docteurs-psl-2024/
LOCATION:Université Paris Dauphine – PSL\, Place du Maréchal de Lattre de Tassigny\, Paris\, 75016\, France
CATEGORIES:Evénement,Recherche
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