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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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DTSTART;TZID=Europe/Paris:20251103T080000
DTEND;TZID=Europe/Paris:20251215T170000
DTSTAMP:20251103T144855Z
CREATED:20251103T144805Z
LAST-MODIFIED:20251103T144855Z
UID:28430-1762156800-1765818000@www.chimieparistech.psl.eu
SUMMARY:Ma thèse en 180 secondes – Édition 2026
DESCRIPTION:Résumer plusieurs années de recherche en seulement trois minutes\, de manière claire et divertissante\, devant un jury d’experts et un public non spécialisé : tel est le défi proposé aux doctorantes et doctorants de l’Université PSL dans le cadre du concours international Ma thèse en 180 secondes. \n \nUne formation sur mesure. Ce concours constitue bien plus qu’une simple prestation publique : il permet aux doctorantes et doctorants de perfectionner leur capacité à expliquer et transmettre leur recherche de manière accessible. Cette démarche renforce les échanges avec le grand public et accroît la visibilité de leurs travaux. Afin de maximiser leurs chances de réussite\, le Collège doctoral de l’Université PSL propose aux candidats une formation dédiée et un accompagnement sur mesure en vue de leur préparation au concours. \nLa formation s’intitule « Communiquer clairement et avec impact sur son doctorat face à un public non expert et se préparer à MT180 » et se déroulera sur 3 jours. \nInscriptions ouvertes jusqu’au 15 décembre 2025. \nToutes les informations ici. 
URL:https://www.chimieparistech.psl.eu/evenement-agenda/ma-these-en-180-secondes-edition-2026/
CATEGORIES:Evénement
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20251121T140000
DTEND;TZID=Europe/Paris:20251121T170000
DTSTAMP:20251112T152613Z
CREATED:20251112T152613Z
LAST-MODIFIED:20251112T152613Z
UID:28583-1763733600-1763744400@www.chimieparistech.psl.eu
SUMMARY:Séminaire Programme Gradué Chimie PSL
DESCRIPTION:Friday November 21st at 2 pm\, ESPCI\, amphi Holweck\, 10 rue Vauquelin\, 75005 Paris \nResource recovery and treatment of water using porous composite materials\, Dr Romy Ettlinger; Technical University of Munich\, Lichtenbergstraße 4\, 85748 Garching b. München\, Germany \n\nAbstractIn an era of crisis\, overpopulation and industrial-related release of hazardous waste into our waterbodies\, innovative technologies are much-needed. Covering almost 71% of the surface of our ‘blue planet’\, water is the most important resource for all living beings – nonetheless only 0.5% of it is freshwater and can be used as drinking water.[1\,2] Today\, the growing threat of water  scarcity due to pollution is increasingly problematic. To ensure access to clean water\, among other things\, the United Nations has set the 17 Sustainable Development Goals\,[3] and porous materials\, metal-organic frameworks (MOFs) in particular\, may play a crucial role in achieving these goals and revolutionize the current water treatment. Self-assembling into diverse 3D frameworks of metal ions/oxoclusters and organic linkers with unprecedented ultra-high porosity (≥ 90% is free volume) and remarkable internal surface areas (≥ 7800 m2/g)\, MOFs represent an ideal material platform for various applications.[4] Their rich reticular chemistry allows for structurally precise fine-tuning of their adsorption properties for high selectivity to specific molecules and substances – thereby simultaneously recovering resources and purifying water. To promote the transformation of these research ideas into real-world applications\, our work focuses on i) screening different MOFs in terms of their physico-chemical properties; ii) investigating their suitability to selectively enrich specific impurities and raw materials from different water sources; iii) processing MOF powders into efficient MOF composites and iv) researching the efficiency of these innovative filtration system. Exploiting the good chemical and mechanical stability of the materials\, their re-use\, re-generation\, or re-cycling will ultimately multiply their value. Establishing such MOFcomposites for water treatment could be a solution to combat the shortage of clean water.\n \nShort-bio\nDr. Romy Ettlinger is a Junior group leader (Liebig Fellowship) at the Technical University of Munich in Germany investigating resource recovery and the remediation of water using porous composites (https://www.professoren.tum.de/en/tum-junior-fellows/ettlinger-romy). She obtained her PhD in 2020 at the University of Augsburg in Germany establishing metal–organic framework (MOF) materials for medicinal applications. Subsequently\, she was a postdoctoral research fellow at the University of St Andrews (United Kingdom) focussing on the development of various porous hybrid framework materials and composites as well as their functionalisation for medical and environmental applications. She is dedicated to uniting like-minded researchers across Europe (and beyond) through the COST Action CA22147 EU4MOFs (https://eu4mofs.com/)\, and supporting young researches to let their passion for science grow. Further her aim is to empower girls and young women to immerse themselves in the natural sciences through outreach programs and the female researcher equality (FREQ https://www.vci.de/fonds/der-fonds/netzwerke/netzwerke/freq/freq.jsp) network of the Fond der Chemischen Industrie.
URL:https://www.chimieparistech.psl.eu/evenement-agenda/seminaire-programme-gradue-chimie-psl-170/
LOCATION:ESPCI Paris\, 10 Rue Vauquelin\, Paris\, 75005\, France
CATEGORIES:Séminaire
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DTSTART;TZID=Europe/Paris:20251121T150000
DTEND;TZID=Europe/Paris:20251121T170000
DTSTAMP:20251114T160945Z
CREATED:20251114T160945Z
LAST-MODIFIED:20251114T160945Z
UID:28619-1763737200-1763744400@www.chimieparistech.psl.eu
SUMMARY:Séminaire Programme Gradué Chimie PSL
DESCRIPTION:The following seminar will be given\, Friday Novembre 21 at 3:00 pm (Paris time)\,  Room Charpak\, entrance building\, ground floor:Magnetic\, metal-insulator and superconducting transitions in Moire  transition metal dicalcogenides by Andrew Millis\, Columbia University and Center for Computational Quantum Physics\, the Flatiron Institute \nOne unit cell thick layers of materials such as WSe2 may be stacked one on top of the other at a small relative twist angle\, creating a Moiré pattern characterized by a large unit cell. The resulting electronic structure is characterized by a nontrivial quantum geometry\, interaction strength set by device configuration\, and in-situ tunable electron density and band theory. The systems exhibit metallic\, superconducting\,  Fermi surface reconstructed (likely antiferromagnetic)\, and insulating phases. The unprecedented tunabilty allows a systematic experiment-theory comparison\, enabling insights into the Mott transition\, electronically mediated superconductivity and fundamental questions of transport in interacting electron systems. This talk reportswill summarize recent experimental and theoretical work related to these questions. \nNature 637\, 839-845 (2025)\, PRR 6 033127 (2024)\, arXiv:2408.16075\, arXiv:2412.14296\, arXiv:2503.11763 arXiv:2506.22325 and to appear \n\nZoom link: https://espci.zoom.us/j/81344410099?pwd=3YaKKUQClFX6dTn6jtc0STB29NTKLH.1\nID: 813 4441 0099Passcode: N_F_Mott
URL:https://www.chimieparistech.psl.eu/evenement-agenda/seminaire-programme-gradue-chimie-psl-171/
LOCATION:évènement hybride
CATEGORIES:Séminaire
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