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Auswahl der wissenschaftlichen Literatur zum Thema „Tout-solide“
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Zeitschriftenartikel zum Thema "Tout-solide"
Colin, Émilie. „Une prestation dans une plate-forme LIBS“. Photoniques, Nr. 103 (Juli 2020): 50–53. http://dx.doi.org/10.1051/photon/202010350.
Der volle Inhalt der QuelleSkipetrov, Sergey. „Localisation d’Anderson de la lumière“. Photoniques, Nr. 108 (Mai 2021): 24–27. http://dx.doi.org/10.1051/photon/202110824.
Der volle Inhalt der QuelleAgarwal, Ruchir, und John-Arne Røttingen. „Le problème du « destructeur clandestin » et les biens publics mondiaux“. Revue d'économie financière N° 151, Nr. 3 (08.11.2023): 83–109. http://dx.doi.org/10.3917/ecofi.151.0083.
Der volle Inhalt der QuelleCastelain, V., G. Morel, M. P. Ledoux und R. Herbrecht. „Prise en charge des infections invasives à champignons filamenteux en réanimation : quel(s) antifongique(s) utiliser ?“ Médecine Intensive Réanimation 29, Nr. 1 (01.03.2020): 24–31. http://dx.doi.org/10.37051/mir-00005.
Der volle Inhalt der QuelleMoser, Walter. „Présentation. Le road movie : un genre issu d’une constellation moderne de locomotion et de médiamotion“. Cinémas 18, Nr. 2-3 (04.08.2008): 7–30. http://dx.doi.org/10.7202/018415ar.
Der volle Inhalt der QuelleReid, Jasper. „Henry More on Material and Spiritual Extension“. Dialogue 42, Nr. 3 (2003): 531–58. http://dx.doi.org/10.1017/s0012217300004789.
Der volle Inhalt der QuelleBohnke, Claude. „Mise au point de capteurs « tout solide » pour le contrôle des boues de forage pétrolier“. Instrumentation Mesure Métrologie 11, Nr. 1-2 (30.06.2011): 99–124. http://dx.doi.org/10.3166/i2m.11.1-2.99-124.
Der volle Inhalt der QuelleRosé, Jean-Jacques. „Dépasser les contradictions inhérentes à l’enseignement et à la recherche en RSE“. Management & Sciences Sociales N° 30, Nr. 1 (01.01.2021): 8–21. http://dx.doi.org/10.3917/mss.030.0008.
Der volle Inhalt der QuelleFriesen, Gerald. „2005 Discours du président de la S.H.C.“ Journal of the Canadian Historical Association 16, Nr. 1 (07.05.2007): 23–48. http://dx.doi.org/10.7202/015726ar.
Der volle Inhalt der QuelleHenri, France. „Quel changement à l’ère numérique? Quelle ingénierie pédagogique pour y répondre?“ Médiations et médiatisations, Nr. 2 (15.11.2019): 227–35. http://dx.doi.org/10.52358/mm.vi2.102.
Der volle Inhalt der QuelleDissertationen zum Thema "Tout-solide"
Garie, Régine. „Etude et réalisation d'une cellule d'affichage électronique "Tout solide"“. Bordeaux 1, 1986. http://www.theses.fr/1986BOR10641.
Der volle Inhalt der QuelleDenoyelle, Quentin. „Microbatteries lithium(-ion) tout solide pour applications haute température“. Thesis, Bordeaux, 2021. http://www.theses.fr/2021BORD0007.
Der volle Inhalt der QuelleThe development of microelectronics has led to the manufacture of sensors able to operate at high temperatures (150 - 250 °C). For this kind of application, available power sources (conventional batteries, ZEBRA batteries etc.) are poorly or not adapted at all to this kind of applications. The use of LiPON, a ceramic electrolyte stable until high temperature, suggests that microbatteries could be used for high temperature current supplying. The aim of this work is to estimate the sustainability of standard microbatteries LiCoO2/LiPON/Li at high temperature. The first part of the study focuses on the thermal stability of the different materials of the stack, especially on delithiated compounds Li1-xCoO2. In parallel, the second part of the study is devoted to the interfaces between the different materials, focusing on the LiCoO2/LiPON interface. Given the results obtained on the thermal stability of the positive electrode material and its reactivity with the electrolyte, the third part deals with the electrode material substitution in order to make a more robust stack at high temperature. The study of Li2FeS2 and its interface with the electrolyte leads to promising results with regard to the aimed application
Garie, Régine. „Etude et réalisation d'une cellule d'affichage électrochrome "tout-solide"“. Grenoble 2 : ANRT, 1986. http://catalogue.bnf.fr/ark:/12148/cb375977898.
Der volle Inhalt der QuelleChable, Johann. „Électrolytes solides fluorés pour batteries tout solide à ions F-“. Thesis, Bordeaux, 2015. http://www.theses.fr/2015BORD0276/document.
Der volle Inhalt der QuelleThis work deals with the synthesis, shaping and characterization of RE1-xMxF3-x (RE = La, Sm, Ce et M = Ba, Ca, Sr) tysonite-type solid solutions. In a first part, onemeticulous approach has been set up for La1-xBaxF3-x solid solution, chosen as a reference.The solid-state synthesis of these materials led to a better knowledge of their chemicalcomposition (Vegard’s laws) and of the structure-ionic mobility correlations. The impact ofthe sintering process on the ionic conductivity is also highlighted. In a second part, the effectsof the nanostructuration conducted by ball-milling of the microcrystalline samples areevaluated. The use of the Design of Experiments methodology led to identify the optimummilling conditions. It appears that the synthesis of electrolytes can be sped- and scaled-up,while keeping high ionic conductivity properties. At last, this approach is applied on othertysonite-type solid solutions, to look for the best electrolyte. The Ce/Sr and Sm/Casubstitutions generate very promising ionic conductors but not really (electro)chemicallystable compounds. A compromise has been found with the choice of the La1-xSrxF3-x solidsolution as the FIB electrolyte for the electrochemical performances tests, regarding its higherchemical stability
Cluzeau, Benoît. „Développement de batteries lithium-ion « Tout solide » pour véhicules électriques“. Electronic Thesis or Diss., Pau, 2022. http://www.theses.fr/2022PAUU3071.
Der volle Inhalt der QuelleImprovements in the performances of Li-ion batteries in the past two decades, has enabled the introduction of many electric cars on the market. However, demands regarding the safety, autonomy, and fast charging require the development of new and more efficient technologies.It was in this context that the RAISE 2024 project, in which this thesis is part of, was founded. This collaboration between ARKEMA, SAFT and the University of Pau and Adour Countries aims to develop a lithium ion battery with a solid electrolyte. The development of such a system has a double objective: the reinforcement of safety during operation, and the use of new electrode materials with higher capacity such as metallic lithium.To achieve this objective, two electrolytes were studied in this thesis. The first consists of a gelled electrolyte obtained by crosslinking of a polymer matrix. It provides good performance in terms of ionic conductivity at room temperature (10-3 S/cm). More than 700 cycles were achieved with this electrolyte in a battery cell before reaching 80% of initial capacity. The impact of polymer matrix on performance was studied through a series of electrochemical tests and surface analysis (XPS). Finally, safety tests (nail penetration) carried out on cells filled with this electrolyte show a significant reduction of energy released.Finally, a second ionic conductor was studied. It comes in the form of a polymer membrane, plasticized with an ionic liquid and a solvent. This membrane exhibits ionic conductivity above 10-4 S/cm at room temperature. Coupled with a gel electrolyte in electrodes to improve interfacial contact, the membrane shows a high resistance to lithium dendrites. A cell using this electrolyte and composed of NMC 811 as positive electrode and lithium metal as negative electrode performed 200 cycles at a rate of C/5, D/2 before losing 20% of its initial capacity
Auvergniot, Jérémie. „Étude des mécanismes aux interfaces électrode/électrolyte d’accumulateurs « bulk tout-solide »“. Thesis, Pau, 2017. http://www.theses.fr/2017PAUU3044/document.
Der volle Inhalt der QuelleThe last two decades have shown a tremendous spreading of portable electronics, changing our society. This change was made possible by the invention of Li-ion batteries, which provide a high energy density for a low weight and volume. More recently the development of new applications, such as electric vehicles or renewable energies, has led to new needs in terms of electrochemical storage. For some applications, user safety will be as important as cost and energy density. On the other hand, research around Na-ion batteries focuses an increased interest, because they do not depend on lithium cost. Replacing organic liquid electrolytes with inorganic solid electrolytes is an interesting solution to improve the safety of batteries, because inorganic ionic conductors are nonflammable, stable at high temperature, and supposed to be chemically and electrochemically more stable. Using those materials in all-solid-state batteries has however several limiting factors, such as loss of contact between particle at the interfaces during cycling, and also chemical/electrochemical compatibility issues between materials. Another issue with this type of batteries is the interdiffusion of species at interfaces leading to an impedance increase during cycling. Several solutions exist to mitigate those issues, such coating the active material particles with a less reactive inorganic material. However there is a lack of knowledge on the species forming at those interfaces, knowledge which is needed to improve the performances of such systems. Studying those interfacial interactions and characterizing the species formed as those interfaces was the main topic of this Ph.D thesis.This work has been done in collaboration between two laboratories : IPREM (University of Pau - CNRS, France) and LRCS (University of Amiens - CNRS, France). Two solid electrolytes have been studied: the argyrodite Li6PS5Cl and the NaSICON Na3Zr2Si2PO12. Those materials have been synthetized, then integrated in bulk all-solid-state batteries and their interfaces were characterized by X-Ray Photoelectron Spectroscopy (XPS) and Auger Electron Spectroscopy (AES). Those two techniques provide us very complementary information, the first allowing identification and quantification of surface species, the second one giving access to the spatial repartition of elements at a nanometric level.The analysis of bulk all-solid-state batteries based on the electrolyte Na3Zr2Si2PO12 using the active material Na3V2(PO4)3 showed micromorphologic changes during cycling, as well as interdiffusion phenomena between particles. AES analysis also allowed us to describe self-discharge issues.The study of Li6PS5Cl-based batteries highlighted that this solid electrolyte is stable towards the negative electrode active material LTO. It however has interfacial reactivity towards positive electrode active materials such as LCO, NMC, LMO, LFP and LiV3O8. This reactivity leads to the formation of several species such as LiCl, P2Sx , Li2Sn , S0 and phosphates at the interface with Li6PS5Cl. In spite of the encountered interfacial reactivity issues, we managed to build all-solid-state batteries based on Li6PS5Cl showing a good capacity retention over 300 cycles when cycled between 2.8 and 3.4V
Barraco, Laurent. „Sources laser tout solide accordables à base de matériau Nd: PPLN“. Palaiseau, Ecole polytechnique, 2001. http://www.theses.fr/2001EPXX0040.
Der volle Inhalt der QuelleRosini, Sébastien. „Capteur potentiométrique tout solide pour le dosage de l'hydrogène dans l'air“. Grenoble INPG, 2003. http://www.theses.fr/2003INPG0028.
Der volle Inhalt der QuelleDongui, Bini Kouame. „Electrode métallique négative pour générateurs électrochimiques "tout solide" à conduction protonique“. Grenoble INPG, 1988. http://www.theses.fr/1988INPG0111.
Der volle Inhalt der QuelleDongui, Bini Kouame. „Electrode métallique négative pour générateurs électrochimiques "tout solide" à conduction protonique“. Grenoble 2 : ANRT, 1988. http://catalogue.bnf.fr/ark:/12148/cb37613326t.
Der volle Inhalt der QuelleBücher zum Thema "Tout-solide"
VIALLET. Batteries Tout-Solide Monolothiques. ISTE Editions Ltd., 2018.
Den vollen Inhalt der Quelle findenTout Ce Qui Est Solide Se Dissout Dans L'Air. Belfond Dom Etranger, 2015.
Den vollen Inhalt der Quelle findenBuchteile zum Thema "Tout-solide"
Le Cras, F., V. Tarnopolskiy, C. Barchasz, R. Bouchet und D. Devaux. „8 Accumulateurs « tout-solide »“. In Batteries Li-ion, 153–78. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-2410-6-009.
Der volle Inhalt der QuelleLe Cras, F., V. Tarnopolskiy, C. Barchasz, R. Bouchet und D. Devaux. „8 Accumulateurs « tout-solide »“. In Batteries Li-ion, 153–78. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-2410-6.c009.
Der volle Inhalt der QuelleHickmott, Sarah. „Prelude“. In Music, Philosophy and Gender in Nancy, Lacoue-Labarthe, Badiou, 1–14. Edinburgh University Press, 2020. http://dx.doi.org/10.3366/edinburgh/9781474458313.003.0001.
Der volle Inhalt der QuelleHOTTE, Lucie. „La petite histoire de l’édition franco-canadienne“. In Les maisons d’édition francophones au prisme de leurs archives, 109–24. Editions des archives contemporaines, 2022. http://dx.doi.org/10.17184/eac.6520.
Der volle Inhalt der QuelleFarinetti, Marina, und Gabriel Vommaro. „Chapitre viii. Tout ce qui est solide se dissout dans l’air : participation politique et estallidos sociales dans l’Argentine récente“. In La diagonale des conflits, 147–64. Éditions de l’IHEAL, 2018. http://dx.doi.org/10.4000/books.iheal.6254.
Der volle Inhalt der QuelleBerichte der Organisationen zum Thema "Tout-solide"
de Marcellis-Warin, Nathalie, François Vaillancourt, Ingrid Peignier, Molivann Panot, Thomas Gleize und Simon Losier. Obstacles et incitatifs à l’adoption des technologies innovantes dans le secteur minier québécois. CIRANO, Mai 2024. http://dx.doi.org/10.54932/dlxt6536.
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