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X-WR-CALNAME:Chimie ParisTech - PSL
X-ORIGINAL-URL:https://www.chimieparistech.psl.eu
X-WR-CALDESC:Évènements pour Chimie ParisTech - PSL
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TZID:Europe/Paris
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DTSTART:20261025T010000
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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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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:20250605T140000
DTEND;TZID=Europe/Paris:20250605T160000
DTSTAMP:20250603T083634Z
CREATED:20250603T083634Z
LAST-MODIFIED:20250603T083634Z
UID:27364-1749132000-1749139200@www.chimieparistech.psl.eu
SUMMARY:Séminaire Programme Gradué Chimie PSL
DESCRIPTION:June 5 – 2 pm – Amphi Charpak\, ESPCI Paris-PSL. Bio-inspired Buoyant Gas Bubble-Encapsulating Microcapsules (GEMs)\, Daeyeon Lee Chemical and Biomolecular Engineering\, University of Pennsylvania\, Philadelphia\, USA. \nMany aquatic microorganisms\, such as cyanobacteria and green algae\, rely on intracellular gas vesicles—protein nanostructures with tunable collapse thresholds—to regulate buoyancy\, navigate light gradients\, and avoid predation. Similarly\, vascular plants use xylem cavitation as a water-stress response\, harnessing pressure-driven gas formation to regulate transport under extreme environmental conditions. Inspired by these strategies\, we have developed gas bubble-encapsulating microcapsules (GEMs)\, synthetic\, buoyant microcapsules\, via osmotic cavitation. I will discuss themechanics and kinetics of bubble growth. These GEMs represent a new class of soft matter systems that can be used for therapeutic delivery\, environmental sensing\, or materials actuation under mechanical load. Critical to understanding and optimizing the structure–function relationships in GEMs is the ability to generate large libraries of double emulsions with finely tunable diameter and shell thickness. To accelerate the discovery of GEMs and other cell-like droplet architectures\, we have developed an artificial intelligence (AI)-empowered Automated Droplet Library (ADLib) generator. This platform integrates a convolutional neural network-based object detection model with real-time feedback control\, enabling fully autonomous and rapid generation of droplet libraries. Capable of producing 25 distinct monodisperse double emulsions within 2–3 hours—down from a month of manual effort—ADLib monitors droplet morphology every 171 milliseconds and adjusts flow conditions with reaction times faster than those of humans. With a user-friendly graphical interface and robust hardware-software integration\, ADLib eliminates the need for constant operator oversight\, significantly increasing experimental throughput\, precision\, and reproducibility. By coupling bioinspired materials design with AI-enabled microfluidic control\, this work presents a promising pathway toward functional microstructures that actively respond to their mechanical environment\, much like their biological counterparts.
URL:https://www.chimieparistech.psl.eu/evenement-agenda/seminaire-programme-gradue-chimie-psl-146/
LOCATION:amphi Charpak\, ESPCI Paris-PSL
CATEGORIES:Séminaire
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