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TZID:Europe/Paris
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261014T140000
DTEND;TZID=Europe/Paris:20261014T150000
DTSTAMP:20261009T130453Z
CREATED:20261009T130453Z
LAST-MODIFIED:20261009T130453Z
UID:10000301-1791986400-1791990000@sfp-alpes.fr
SUMMARY:Liuba GOSTEVA (LPMMC)
DESCRIPTION:Scaling regimes of the 1D Kuramoto-Sivashinsky equation\nRésumé : \nThe Kuramoto-Sivashinsky (KS) equation describes various phenomena exhibiting chaos and instabilities\, including flames\, reaction-diffusion processes\, and thin liquid film flows. It resembles the Kardar-Parisi-Zhang (KPZ) equation\, with the key difference being the negative « viscosity » in the KS equation. The KS equation is known to belong to the KPZ universality class: at large scales\, its statistical properties are governed by the KPZ fixed point\, characterized by the dynamical exponent $z=3/2$ and a known PDF of fluctuations. In this talk\, I will analyze the stochastic KS equation using the functional renormalization group (FRG). In this framework\, attractive fixed points of the FRG equation determine large-scale universal behavior\, while unstable fixed points govern small-scale universal behavior. I will show that the two-point correlation function exhibits\, besides the KPZ scaling at large scale\, another universal scaling regime at small scale\, with $z=1$. This scaling is very robust as it is intrinsic to the KS dynamics. It arises from the vanishing of the effective viscosity when evolving from its microscopic negative KS value\, to its macroscopic effective positive KPZ value. I will also present results from direct numerical simulations\, which confirm these findings. The talk is based on the following articles: 1 L. Gosteva\, D. Roy\, N. Wschebor\, and L. Canet\, arXiv:2605.23364 (2026). 2 L. Gosteva\, N. Wschebor\, and L. Canet\, arXiv:2607.15784 (2026). \n_ \nContact : pierre.nataf@lpmmc.cnrs.fr
URL:https://sfp-alpes.fr/event/liuba-gosteva-lpmmc/
LOCATION:LPMMC – salle Roger Maynard (G421)\, CNRS - LPMMC 25 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261015T130000
DTEND;TZID=Europe/Paris:20261015T140000
DTSTAMP:20261002T124828Z
CREATED:20261002T124828Z
LAST-MODIFIED:20261002T124828Z
UID:10000286-1792069200-1792072800@sfp-alpes.fr
SUMMARY:Léo GERLIN (INRAE\, Lyon)
DESCRIPTION:Linking the metabolism of agricultural pests to their interaction networks through constraint-based modeling\nContact : lucie.lamothe@univ-grenoble-alpes.fr \n 
URL:https://sfp-alpes.fr/event/leo-gerlin-inrae-lyon/
LOCATION:IMAG – Salle de Réunion\, 150 place du Torrent\, St Martin d’Hères\, 38400\, France
CATEGORIES:Séminaire
ORGANIZER;CN="TIMC - IMAG":MAILTO:lucie.lamothe@univ-grenoble-alpes.fr
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261015T140000
DTEND;TZID=Europe/Paris:20261015T150000
DTSTAMP:20260911T130347Z
CREATED:20260911T130150Z
LAST-MODIFIED:20260911T130347Z
UID:10000251-1792072800-1792076400@sfp-alpes.fr
SUMMARY:Elise DUMONT (Institut de Chimie de Nice\, Université Côte d’Azur)
DESCRIPTION:Modeling the dynamics of DNA (photo)lesions: from reactivity to repair\nRésumé : \nFormation and repair of DNA lesions embrace a rich and combinatorial chemistry\, where atomic-scale simulations are increasingly helpful to complement and extent experimental evidences. \nThe modeling of DNA structure\, dynamics\, and (photo)chemistry has benefited from a series of recent methodological developments that now allow\, for instance capturing DNA-photosensitizers interactions\, probing new excited-state mechanisms for DNA lesions induction or photostability [1]\, and rationalize the photochemistry or photocatalytic properties of drugs within DNA owing to hybrid QM/MM-MD schemes. \nI will present a series of examples where computational approaches can palliate\, at least partly\, the absence of NMR\, FRET or X-ray data for damaged DNA oligonucleotides\, DNA-drug\nbinding modes or even DNA-proteins interactions at the nucleosomal scale [2\,3]. I will also situate DNA-ligand interactions\, which can be helpful for the design of next-generation G-\nquadruplex-specific photosensitizers [4] or new DNA-inspired photocatalysts [5]. \n[1] A. Frances-Monerris\, H. Gattuso\, D. Roca-Sanjuan\, I. Tunon\, M. Marazzi\, E. Dumont\, A. Monari\, Chem. Sci.\, 2018\, 9:7902-7911\n[2] E. Matouskova\, E. Bignon\, V. E. P. Claerbout\, T. Drsata\, N. Gillet\, A. Monari. E. Dumont\, F. Lankas\, J. Chem. Theory. Comput.\, 2020\, 16(9):5972-5981\n[3] T. Wen\, M. Kermarrec\, E. Dumont\, N. Gillet\, M. M. Greenberg\, J. Am. Chem. Soc.\, 2023\, 145(43):23702-23714\n[4] M. Deiana et al.\, Nucl. Acids. Res.\, 2023\, 51(12):6264-6285\n[5] Z. Pastorel\, J. Zani\, M. Noël\, A. Bartocci\, S. Arseniyadis\, E. Dumont\, Y. Canac\, O. Baslé\, M. Smietana\, Nat. Comm.\, 2026\, 17:7527 \n_ \nContact : anne.milet@univ-grenoble-alpes.fr
URL:https://sfp-alpes.fr/event/elise-dumont-institut-de-chimie-de-nice-universite-cote-dazur/
LOCATION:DCM – Salle C209\, DCM - Bât Chimie Recherche 301 rue de la Chimie\, St Martin d'Hères\, 38400\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261015T140000
DTEND;TZID=Europe/Paris:20261015T150000
DTSTAMP:20260925T093019Z
CREATED:20260925T093019Z
LAST-MODIFIED:20260925T093019Z
UID:10000266-1792072800-1792076400@sfp-alpes.fr
SUMMARY:Francesca CHIODI (C2N\, Université Paris-Saclay)
DESCRIPTION:Superconducting Epitaxial Silicon – when you turn on the light\nRésumé : \nSince the discovery of BCS superconductivity in silicon by nanosecond laser ultra-doping with boron\, theoretical and experimental works have endeavored to understand what triggers and controls the superconducting phase. Indeed\, superconducting Si has great potential to develop a cryogenic electronics with the advantages of large scale integration and high reproducibility. Through the optimization of the nanosecond laser temporal profile\, we achieved an excellent control of both the electrical and structural properties of ultra-doped Si thin layers\, with state of the art maximum carrier concentration (8 at.%) in monocrystalline epilayers with few defects\, 100% dopant activation up to and above the solubility limit\, and a vertically homogeneous doping profile [1-3]. The control and improvement of the active doping is directly reflected in the control of the superconducting critical temperature Tc\, increased by 30% up to 0.9 K in this optimized setup\, and whose dependence with doping can now be modelled within BCS frame [3]. Furthermore\, we demonstrated that superconductivity is not only controlled by doping\, but also by the lattice deformation. Thus\, it is possible to tune up to 50% Tc by modifying by 1% the lattice parameter\, as shown through nanosecond laser incorporation of Ge up to 20 at.% [4]. \nThe sensitivity of superconducting silicon allows for multiple modulation ‘knobs’: for instance Tc can be tuned by doping\, allowing for the design of superconducting\, metallic or semiconducting regions in a device\, or by strain relaxation\, e.g. through localized Ge ion implantation. In addition\, the thin superconducting silicon layer can be affected by the absorption of photons either in the superconductor itself\, or in the undoped silicon underneath. The effect of light irradiation was highlighted in superconducting coplanar waveguide resonators\, whose resistivity easily matches the vacuum impedance. Due to the large disorder\, a high kinetic inductance characterizes the resonators [5]. The quasiparticle dynamics was measured when submitting the resonators to either a light or a microwave pulse\, these out-of-equilibrium measurements being also compared with the equilibrium generation-recombination noise spectral density. In addition\, work is in progress to assess the effect of visible photons on the DC response of the superconducting silicon micrometer-size lines\, where a single-photon counting mode with extremely low Dark Count Rates has been highlighted\, and whose detection mechanism is currently investigated. \n1. L. Desvignes\, et al.\, arXiv:2603.06383 (2026) ; PhD thesis\, Université Paris Saclay (2023) \n2. G. Hallais\, et al.\, Semicond. Sci.Tech. 38\, 034003 (2023) \n4. S. Nath\, et al.\, Phys. Status Solidi A\, 221: 2400313 (2024) \n5. P. Bonnet\, et al.\, Phys. Rev. Applied 17\, 034057 (2022) \n_ \nContact : florence.levy-bertrand@neel.cnrs.fr
URL:https://sfp-alpes.fr/event/francesca-chiodi-c2n-universite-paris-saclay/
LOCATION:CNRS – Salle Rémy Lemaire (K223)\, CNRS - Institut Néel 25 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261015T160000
DTEND;TZID=Europe/Paris:20261015T170000
DTSTAMP:20260409T111459Z
CREATED:20260409T111456Z
LAST-MODIFIED:20260409T111459Z
UID:10000125-1792080000-1792083600@sfp-alpes.fr
SUMMARY:Christophe SALOMON
DESCRIPTION:Atomes froids et mesure précise du temps\n_ \nToutes les informations sont disponibles sur : https://indico.ijclab.in2p3.fr/event/13426/ \nContact : louis.fayard@IJCLAB.INP3.FR
URL:https://sfp-alpes.fr/event/christophe-salomon/
LOCATION:Laboratoire IJCLab – Auditorium Pierre Lehmann\, Rue Ampère\, Orsay cedex\, 91898\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261016T103000
DTEND;TZID=Europe/Paris:20261016T113000
DTSTAMP:20260918T091036Z
CREATED:20260918T091036Z
LAST-MODIFIED:20260918T091036Z
UID:10000261-1792146600-1792150200@sfp-alpes.fr
SUMMARY:Xavier RIBAS SALAMAÑA (Universitat de Girona)
DESCRIPTION:Supramolecular Nanocages as Masks for Fullerene Regiofunctionalization and Beyond\nRésumé : \nThe design of a confined cavity dictates the type of guest to be encapsulated\, and supramolecular cages are tunable scaffolds that allow the rational design of their cavities. Nowadays\, easily accessible C60 and C70 fullerene mono-adducts are mainly used in any application (1) due to the hampered accessibility to pure alternative fullerene poly-adduct derivatives. In general\, multi-adduct mixtures with uncontrolled regioselectivity (multi-isomers) are obtained\, and chromatographic purification is too costly and time-consuming. Herein\, porphyrin-based supramolecular nanocapsules (2\,3) are used as supramolecular shadow masks to tame the over-reactivity of Bingel-type cyclopropanation reactions and to have full control over the equatorial regioselectivity\nand the number of additions. Furthermore\, the regioselectivity control is finely tuned using a three-shell Matryoshka-like assembly towards synthesizing a single trans-3 bis-Bingel-C60 for the first time (4). Also\, the mask strategy is extended to C60 and C70 for Bingel and Diels-Alder (5\,6). We envision that the described protocol will produce a plethora of derivatives for applications such as solar cells. We will also discuss our recent selective purification of fullertube mixtures and beyond (7\,8). \nReferences :\n1. E. Castro\, L. Echegoyen et al. J. Mater. Chem. C\, 2018\, 6\, 2635.\n2. C. García-Simón\, X. Ribas\, et al. Nat. Commun. 2014\, 5:5557.\n3. C. Fuertes-Espinosa\, X. Ribas\, et al\, Chem 2020\, 6\, 169–186.\n4. E. Ubasart\, X. Ribas\, et al\, Nat. Chem. 2021\, 13\, 420-427.\n5. V. Iannace\, X. Ribas et al\, J. Am. Chem. Soc. 2024\, 146\, 5186−5194.\n6. T. Pèlachs\, X. Ribas et al\, CCS Chem. 2025\, 7\, 703–715\n7. V. Iannace\, X. Ribas et al\, J. Am. Chem. Soc. 2025\, 147\, 36079−36084\n8. V. Iannace\, X. Ribas\, Acc. Chem. Res. 2026\, 59\, 1414−1425 \n_ \nContact : noemie.lalaoui@univ-grenoble-alpes.fr
URL:https://sfp-alpes.fr/event/xavier-ribas-salamana-universitat-de-girona/
LOCATION:DCM – Salle C209\, DCM - Bât Chimie Recherche 301 rue de la Chimie\, St Martin d'Hères\, 38400\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261016T110000
DTEND;TZID=Europe/Paris:20261016T120000
DTSTAMP:20261009T130746Z
CREATED:20261009T092313Z
LAST-MODIFIED:20261009T130746Z
UID:10000298-1792148400-1792152000@sfp-alpes.fr
SUMMARY:Baptiste MARTIN (Eviden)
DESCRIPTION:Tensor Networks for quantum algorithms and quantum circuit simulations\nLe séminaire théorie est financé par la fédération de recherche Quantalps. \nRésumé : \nTensor networks (TNs) provide powerful tools for the classical simulation of quantum many-body systems\, while quantum computers offer a natural framework for generating and manipulating highly entangled states. With the recent advances in quantum hardware\, classical simulation has become increasingly important for understanding the capabilities of quantum devices and for developing more effective quantum algorithms. In this talk\, I will present two recent works. First\, I will discuss hybrid TN-quantum approaches and show how TN methods can improve quantum computing workflows\, enabling scalable variational ground-state preparation through warm-start circuit optimization and helping identify regimes where quantum computers may offer a computational advantage. Second\, I will focus on the classical simulation of quantum circuits and investigate alternative tensor network architectures. In particular\, I will show how Tree Tensor Networks (TTNs) can outperform standard Matrix Product States (MPS) when the network geometry more closely matches the entanglement structure generated by a quantum circuit. Together\, these results illustrate how tensor networks could both enhance near-term quantum computing and provide more efficient classical simulation strategies. \n_ \nContact : serge.florens@neel.cnrs.fr
URL:https://sfp-alpes.fr/event/baptiste-martin-eviden/
LOCATION:LPMMC – salle Roger Maynard (G421)\, CNRS - LPMMC 25 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261016T111500
DTEND;TZID=Europe/Paris:20261016T121500
DTSTAMP:20260918T092550Z
CREATED:20260918T092501Z
LAST-MODIFIED:20260918T092550Z
UID:10000262-1792149300-1792152900@sfp-alpes.fr
SUMMARY:Gyorgy SZALOKI (Université Paul Sabatier – Toulouse)
DESCRIPTION:Towards confined gold catalysis\nRésumé : \nGold complexes have been the subject of an intense research over the past decade.[1] The main driving force to this interest is to impart new reactivity to these complexes\, that can be leveraged in catalysis. In addition to the widely used ligand engineering strategy\,[2] the concept of confining gold complexes within supramolecular cages has also shown a great\npotential.[3] Toste et coll. have demonstrated\, that small cationic gold complexes (LAu+\, L = Me3P)\, generated within anionic cages show a markedly different reactivity compared to their non-confined analogues. However\, the small cavity size of the cage (251 Å3) has not allowed to extend this concept to larger complexes (L = tBuP\, NHC) and substrates. Indeed\, one obstacle\nto overcome is the synthesis of large anionic cages\, that is far from being straightforward.\nIn order to design and synthesize large anionic cages\, we have implemented a rational approach combining modellizations and cavity size calculations.[4] As a result\, we have prepared an anionic\, cyclotricatechylene based supramolecular cage 1 with a large cavity (558 Å3).[5] Recently\, we have been studying the host-guest chemistry of this cage\, in order to prepare the confined gold-catalyst (Au+@1\, Figure 1). The catalytic activity of Au+@1 is being studied\, with special attention to the synthetically challenging gold catalyzed macrocyclizations. \nFigure 1. Concept: Using the confinement effect to alter the reactivity of gold complexes. \nAcknowledgements\nThe CNRS\, the ANR and the French Ministry of Higher Education and Research is gratefully acknowledged for funding. \nReferences\n[1] L. Rochigiani\, M. Bochmann Chem. Rev. 2021\, 121\, 8364.\n[2] J. Rodriguez\, G. Szalóki\, E. D. Sosa Carizzo\, N. Saffon-Merceron\, K. Miqueu\, D. Bourissou Angew. Chem. Int. Ed.\, 2020\, 59\, 1511;\n(b) G. Szalóki\, J. Babinot\, V. Martin-Diaconescu\, S. Mallet-Ladeira\, Y. Garcia-Rodeja\, K. Miqueu\, D. Bourissou Chem. Sci. 2022\, 13\, 10499.\n[3] M. Morimoto\, S. M. Bierschenk\, K. T. Xia\, R. G. Bergman\, K. N. Raymond\, D. F. Toste Nat. Catal. 2020\, 3\, 969.\n[4] J. V. S. Guerra\, L. F. G. Alves\, D. Bourissou\, P. S. Lopes-de-Oliveira\, G. Szalóki J. Chem. Inf. Model. 2023\, 63\, 3772.\n[5] Y. Diack\, S. Mallet-Ladeira\, D. Lesage\, J. V. S. Guerra\, D. Bourissou\, G. Szalóki Chem. Commun. 2025\, 61\, 8003 \n_ \nContact : noemie.lalaoui@univ-grenoble-alpes.fr
URL:https://sfp-alpes.fr/event/gyorgy-szaloki-universite-paul-sabatier-toulouse/
LOCATION:DCM – Salle C209\, DCM - Bât Chimie Recherche 301 rue de la Chimie\, St Martin d'Hères\, 38400\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261020T110000
DTEND;TZID=Europe/Paris:20261020T120000
DTSTAMP:20261002T090824Z
CREATED:20261002T090716Z
LAST-MODIFIED:20261002T090824Z
UID:10000282-1792494000-1792497600@sfp-alpes.fr
SUMMARY:Sagar BHOGARAJU (EMBL)
DESCRIPTION:Versatility of Melanoma antigens in regulating human ubiquitin signalling\nRésumé : \nHumans carry around 40 different genes coding for melanoma antigen (MAGE) proteins. Most MAGE proteins are selectively expressed in the testis and cancer\, categorizing them as cancer-testis antigens (CTAs). These CTA MAGEs are potently oncogenic and known to be poor prognostic markers. Additionally\, around 11 MAGE proteins are expressed in various tissues\, with a particular enrichment in the brain. MAGEs interact with multiple ubiquitin ligases to influence their activity or redirect them to specific substrates in a context-dependent manner. We use integrative structural biology techniques combined with proteomics and light microscopy to answer fundamental questions in MAGE biology. In this talk\, I will present two examples of MAGE-driven signaling—one involving an oncogenic MAGE and another involving a neuronal-specific MAGE protein. I will also present our efforts to develop novel\, proteomics-based methods to study ubiquitin signaling at scale. \n_ \n\n\n\n\n\nRappel : L’accès au campus EPN nécessite un avis de rendez-vous. A cet effet merci d’adresser votre demande à ibs.seminaires@ibs.fr (au moins 48h à l’avance).
URL:https://sfp-alpes.fr/event/sagar-bhogaraju-embl/
LOCATION:IBS\, 71 avenue des Martyrs\, Grenoble
CATEGORIES:Séminaire
ORGANIZER;CN="IBS":MAILTO:ibs.seminaires@ibs.fr
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261020T140000
DTEND;TZID=Europe/Paris:20261020T150000
DTSTAMP:20261009T091213Z
CREATED:20261009T090939Z
LAST-MODIFIED:20261009T091213Z
UID:10000296-1792504800-1792508400@sfp-alpes.fr
SUMMARY:James O'SULLIVAN (CEA Saclay\, Quantronics group)
DESCRIPTION:Coherent interaction between individual electron spins and superconducting circuits and dispersive spin detection\nRésumé : \nSpin defects in solids can be engineered as well-isolated two-level-systems with coherence that can exceed seconds\, but couple weakly to other quantum systems and to electromagnetic fields. In the lab\, exploring quantum optical effects in the microwave regime with spin defects requires an enhancement of the light-matter interaction; this may be achieved by coupling the spin to a low-impedance superconducting resonator. I will present two recent results involving resonator design and exploration of magnetic noise-insensitive spin defects. The first is a demonstration of the dispersive shift in frequency of a superconducting resonator conditioned on the state of a single electron spin. The second is a coherent interaction between a single magnetic-noise-insensitive electron spin transition and the field of a resonator in the so-called high cooperativity regime. \n_ \nContact : equipe-seminaires-nano@listes.grenoble.cnrs.fr
URL:https://sfp-alpes.fr/event/james-osullivan-cea-saclay-quantronics-group/
LOCATION:CNRS – Salle Rémy Lemaire (K223)\, CNRS - Institut Néel 25 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261026T140000
DTEND;TZID=Europe/Paris:20261026T150000
DTSTAMP:20260911T134555Z
CREATED:20260911T134555Z
LAST-MODIFIED:20260911T134555Z
UID:10000253-1793023200-1793026800@sfp-alpes.fr
SUMMARY:Ramón RIAL (Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares (CIQUS)\, Departamento de Física Aplicada\, Universidade de Santiago de Compostela\, Spain)
DESCRIPTION:Dynamic Supramolecular Eutectogels with Reversible Light Driven Reconfiguration\nRésumé : \nDeep eutectic solvents (DESs) constitute a highly tunable class of liquid media formed by the association of two or more components (e.g.\, a hydrogen-bond donor and an organic salt)\, whose extensive hydrogen bonding interactions result in a pronounced depression of the melting point. Their composition-dependent physicochemical properties make DESs particularly attractive for directing the self-assembly of functional soft materials [1\,2]. In this context\, eutectogels (gels formed within DES media)\, offer a versatile platform in which solvent–solute interactions can be exploited to modulate macroscopic material properties beyond those dictated by the gelator alone [3]. \nHerein\, we report a versatile strategy for the design of light-responsive eutectogels with intrinsically tunable mechanical properties. The approach relies on the supramolecular co-assembly of an amphiphilic component with a rationally designed azobenzene derivative engineered for high solubility in water-free DES media. Through complementary characterization across molecular and mesoscale length scales\, we provided a detailed understanding of the heterotypic interactions underlying the formation of elongated\, one-dimensional supramolecular networks. We further establish that photoisomerization of the azobenzene units induces pronounced rearrangements of these networks\, providing a molecular-level mechanism for controlling the material’s hierarchical organization. \nUpon ultraviolet irradiation\, this molecular reconfiguration leads to an abrupt gel-to-sol transition\, effectively erasing the material’s solid-like mechanical response. Subsequent exposure to visible light reverses the process\, restoring the gel state and recovering a mechanically robust network that remains stable during prolonged storage without appreciable loss of performance. Remarkably\, the optically driven transition is highly reversible and cyclable\, enabling repeated switching between gel and sol states without detectable deterioration of structural integrity or mechanical properties. Collectively\, these results demonstrate how molecular photochemical events can be translated into reversible macroscopic mechanical actuation\, establishing DES-based supramolecular eutectogels as promising platforms for dynamically reconfigurable soft matter. \nReferences :\n[1] Hansen\, B. et al.\, Chem. Rev. 2021\, 101\, 1232-1285.\n[2] P. A. Mercadal\, A. González\, A. Beloqui\, L. C. Tomé\, D. Mecerreyes\, M. Calderón and M. L. Picchio\, JACS Au\, 2024\, 4\, 3744-3758.\n[3] A. Sanchez-Fernandez\, J. F. Poon\, A. E. Leung\, S. F. Prevost and C. Dicko\, ACS Nano\, 2024\, 18\, 18314-18326. \nOrsolya Czakkel (College 9 Secretary) \nExternal visitors may ask for a site access to : tellier@ill.fr \nZoom link : https://ill.zoom.us/j/93326326401?pwd=mq7JqMLctpkqw7hIcPWTq6QGt8nGOg.1 – Password : SeminarC3 \n 
URL:https://sfp-alpes.fr/event/ramon-rial-centro-singular-de-investigacion-en-quimica-bioloxica-e-materiais-moleculares-ciqus-departamento-de-fisica-aplicada-universidade-de-santiago-de-compostela-spain/
LOCATION:ILL – Salle de Séminaire (110-111)\, ILL 50 71 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261103T110000
DTEND;TZID=Europe/Paris:20261103T120000
DTSTAMP:20261002T133759Z
CREATED:20261002T133759Z
LAST-MODIFIED:20261002T133759Z
UID:10000288-1793703600-1793707200@sfp-alpes.fr
SUMMARY:Juan Fontecilla-Camps (IBS​)
DESCRIPTION:Notre intelligence est-elle adaptative ?\nSéminaire Grand Public IBS \nRésumé : \n…Ou comment notre recherche de connaissances pratiques et théoriques a impacté le progrès\, et déterminera le destin\, de l’humanité. \nNos ancêtres ont démarré une économie de « chasseurs-cueilleurs » (avec l’Homo erectus)\, qui a été impactée il y a 10 000 ans avec l’invention de l’agriculture par Homo sapiens. En créant la propriété privée et les villes\, l’agriculture a initié un processus de dégradation des milieux naturels que le développent technologique a continué d’amplifier jusqu’à aujourd’hui. Un autre fait qui a modifié notre existence de façon assez marquée a été le bouleversement\, par la science\, des conceptions millénaires que nous avions sur la nature du monde. La question se pose donc\, est-ce que notre intelligence peut être considérée comme adaptative ? Ces sujets seront discutés pendent la conférence. \n_ \nLes séminaires et soutenances sont ouverts à tous\, notez toutefois que l’accès au campus EPN nécessite un avis de rendez-vous. Merci de remplir ce formulaire  et de l’adresser\, plus de 48h à l’avance\, à ce contact. \n\nPensez à vous munir d’une pièce d’identité le jour de votre visite.
URL:https://sfp-alpes.fr/event/juan-fontecilla-camps-ibs/
LOCATION:IBS – Salle des séminaires\, IBS 71 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Séminaire
ORGANIZER;CN="IBS":MAILTO:ibs.seminaires@ibs.fr
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261105T160000
DTEND;TZID=Europe/Paris:20261105T170000
DTSTAMP:20260723T165405Z
CREATED:20260723T163914Z
LAST-MODIFIED:20260723T165405Z
UID:10000219-1793894400-1793898000@sfp-alpes.fr
SUMMARY:Guillaume HEBRARD
DESCRIPTION:Extraordinaires planètes extrasolaires\n_ \nToutes les informations sont disponibles sur : https://indico.ijclab.in2p3.fr/event/13798/ \nContact : louis.fayard@IJCLAB.INP3.FR
URL:https://sfp-alpes.fr/event/guillaume-hebrard/
LOCATION:Laboratoire IJCLab – Auditorium Pierre Lehmann\, Rue Ampère\, Orsay cedex\, 91898\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261106T123000
DTEND;TZID=Europe/Paris:20261106T131500
DTSTAMP:20261008T151437Z
CREATED:20261008T151437Z
LAST-MODIFIED:20261008T151437Z
UID:10000295-1793968200-1793970900@sfp-alpes.fr
SUMMARY:Carine SEBI et Laurent GRIOT (GEM)
DESCRIPTION:Myopie stratégique de l’UE face à sa dépendance au Gaz russe : comment en est-on arrivé là ?\nRésumé : à venir \n_ \nContact : contact@giant-grenoble.org
URL:https://sfp-alpes.fr/event/carine-sebi-et-laurent-griot-gem/
LOCATION:Amphi Minatec\, 3 parvis Louis Néel\, Grenoble\, 38054\, France
CATEGORIES:Séminaire
ORGANIZER;CN="GIANT":MAILTO:giant.campus@cea.fr
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20261216T123000
DTEND;TZID=Europe/Paris:20261216T133000
DTSTAMP:20260723T165459Z
CREATED:20260723T165117Z
LAST-MODIFIED:20260723T165459Z
UID:10000220-1797424200-1797427800@sfp-alpes.fr
SUMMARY:Roland LEHOUCQ
DESCRIPTION:Science-fiction : le monde de la (dé)mesure\n_ \nToutes les informations sont disponibles sur : https://indico.ijclab.in2p3.fr/event/13626/ \nContact : louis.fayard@IJCLAB.INP3.FR
URL:https://sfp-alpes.fr/event/roland-lehoucq/
LOCATION:Université Paris-Saclay – Bâtiment 625 (Hbar) – Amphi A1\, Rue Joliot Curie\, Orsay\, 91400\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20270114T160000
DTEND;TZID=Europe/Paris:20270114T170000
DTSTAMP:20260723T165928Z
CREATED:20260723T165928Z
LAST-MODIFIED:20260723T165928Z
UID:10000221-1799942400-1799946000@sfp-alpes.fr
SUMMARY:Emilia ROBIN
DESCRIPTION:Comment on a construit Orsay\n_ \nToutes les informations sont disponibles sur : https://indico.ijclab.in2p3.fr/event/13925/ \nContact : louis.fayard@IJCLAB.INP3.FR
URL:https://sfp-alpes.fr/event/emilia-robin/
LOCATION:Laboratoire IJCLab – Auditorium Pierre Lehmann\, Rue Ampère\, Orsay cedex\, 91898\, France
CATEGORIES:Séminaire
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END:VCALENDAR