Literatura académica sobre el tema "Diffusion du lithium"
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Artículos de revistas sobre el tema "Diffusion du lithium"
Jun, KyuJung y Gerbrand Ceder. "(Battery Division Student Research Award Sponsored by Mercedes-Benz Research & Development) Rationalizing Fast Lithium-ion Diffusion in Inorganic Lithium Superionic Conductors". ECS Meeting Abstracts MA2023-02, n.º 7 (22 de diciembre de 2023): 985. http://dx.doi.org/10.1149/ma2023-027985mtgabs.
Texto completoOciepa, Jozef. "The Search for the Materials That Are Attractive to "Natural" Li Diffusion". ECS Meeting Abstracts MA2022-02, n.º 3 (9 de octubre de 2022): 296. http://dx.doi.org/10.1149/ma2022-023296mtgabs.
Texto completoXu, Gao, Feng Hao, Mouyi Weng, Jiawang Hong, Feng Pan y Daining Fang. "Strong influence of strain gradient on lithium diffusion: flexo-diffusion effect". Nanoscale 12, n.º 28 (2020): 15175–84. http://dx.doi.org/10.1039/d0nr03746j.
Texto completoLoburets, A. T., N. B. Senenko, M. A. Mukhtarov, Yu S. Vedula y A. G. Naumovets. "Surface Diffusion in Coadsorbed Layers with Different Mobilities of Adsorbates: (Li +Dy) on Mo(112) and (Li+Sr) on W(112)". Defect and Diffusion Forum 277 (abril de 2008): 201–6. http://dx.doi.org/10.4028/www.scientific.net/ddf.277.201.
Texto completoRoselieb, Knut, Marc Chaussidon, Denis Mangin y Albert Jambon. "Lithium diffusion in vitreous jadeite (NaAlSi206): An ion microprobe investigation". Neues Jahrbuch für Mineralogie - Abhandlungen 172, n.º 2-3 (1 de mayo de 1998): 245–57. http://dx.doi.org/10.1127/njma/172/1998/245.
Texto completoRupp, Rico, Bart Caerts, André Vantomme, Jan Fransaer y Alexandru Vlad. "Lithium Diffusion in Copper". Journal of Physical Chemistry Letters 10, n.º 17 (22 de agosto de 2019): 5206–10. http://dx.doi.org/10.1021/acs.jpclett.9b02014.
Texto completoPark, Jong Hyun, Hana Yoon, Younghyun Cho y Chung-Yul Yoo. "Investigation of Lithium Ion Diffusion of Graphite Anode by the Galvanostatic Intermittent Titration Technique". Materials 14, n.º 16 (19 de agosto de 2021): 4683. http://dx.doi.org/10.3390/ma14164683.
Texto completoDörrer, Lars, Philipp Tuchel, Daniel Uxa y Harald Schmidt. "Lithium tracer diffusion in proton-exchanged lithium niobate". Solid State Ionics 365 (julio de 2021): 115657. http://dx.doi.org/10.1016/j.ssi.2021.115657.
Texto completoZuo, Peng y Ya-Pu Zhao. "A phase field model coupling lithium diffusion and stress evolution with crack propagation and application in lithium ion batteries". Physical Chemistry Chemical Physics 17, n.º 1 (2015): 287–97. http://dx.doi.org/10.1039/c4cp00563e.
Texto completoLee, Danwon, Chihyun Nam, Juwon Kim, Bonho Koo, Hyejeong Hyun, Jinkyu Chung, Sungjae Seo et al. "(Battery Student Slam 8 Award Winner) Multi-Clustered Lithium Diffusion in Single-Crystalline NMC Battery Particles". ECS Meeting Abstracts MA2024-01, n.º 5 (9 de agosto de 2024): 704. http://dx.doi.org/10.1149/ma2024-015704mtgabs.
Texto completoTesis sobre el tema "Diffusion du lithium"
Senyshyn, A., M. Monchak, O. Dolotko y H. Ehrenberg. "Lithium Diffusion and Diffraction". Diffusion fundamentals 21 (2014) 4, S.1, 2014. https://ul.qucosa.de/id/qucosa%3A32392.
Texto completoLi, Juchuan. "UNDERSTANDING DEGRADATION AND LITHIUM DIFFUSION IN LITHIUM ION BATTERY ELECTRODES". UKnowledge, 2012. http://uknowledge.uky.edu/cme_etds/12.
Texto completoHeitjans, Paul. "Diffusion in lithium ion conductors – from fundamentals to applications". Universitätsbibliothek Leipzig, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:15-qucosa-181798.
Texto completoSwanson, Claudia H., Michael Schulz, Holger Fritze, Jianmin Shi, Klaus-Dieter Becker, Peter Fielitz y Günter Borchardt. "Examinations of high-temperature properties of stoichiometric lithium niobate". Universitätsbibliothek Leipzig, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:15-qucosa-186802.
Texto completoEpp, Viktor, Christian Brünig, Martin Wilkening, Michael Binnewies y Paul Heitjans. "Lithium diffusion studies of gas-phase synthesized amorphous oxides". Universitätsbibliothek Leipzig, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:15-qucosa-188235.
Texto completoHeitjans, Paul. "Diffusion in lithium ion conductors – from fundamentals to applications". Diffusion fundamentals 20 (2013) 19, S. 1-2, 2013. https://ul.qucosa.de/id/qucosa%3A13583.
Texto completoRahn, J., E. Hüger, E. Witt, P. Heitjans y H. Schmidt. "Lithium Self-Diffusion in Single Crystalline and Amorphous LiAlO2". Diffusion fundamentals 21 (2014) 16, S.1, 2014. https://ul.qucosa.de/id/qucosa%3A32425.
Texto completoBerggren, Elin. "Diffusion of Lithium in Boron-doped Diamond Thin Films". Thesis, Uppsala universitet, Molekyl- och kondenserade materiens fysik, 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-413090.
Texto completoOhlendorf, Gerd, Denny Richter, Jan Sauerwald y Holger Fritze. "High-temperature electrical conductivity and electromechanical properties of stoichiometric lithium niobate". Universitätsbibliothek Leipzig, 2016. http://nbn-resolving.de/urn:nbn:de:bsz:15-qucosa-192902.
Texto completoMoore, Charles J. (Charles Jacob). "Ab initio screening of lithium diffusion rates in transition metal oxide cathodes for lithium ion batteries". Thesis, Massachusetts Institute of Technology, 2012. http://hdl.handle.net/1721.1/79562.
Texto completoCataloged from PDF version of thesis.
Includes bibliographical references (p. 57-62).
A screening metric for diffusion limitations in lithium ion battery cathodes is derived using transition state theory and common materials properties. The metric relies on net activation barrier for lithium diffusion. Several cathode materials are screened using this approach: [beta]'-LiFePO4, hexagonal LiMnBO3, monoclinic LiMnBO3, Li 3Mn(CO3)(PO4), and Li9V3 (P2O7)3(PO4) 2. The activation barriers for the materials are determined using a combined approach. First, an empirical potential model is used to identify the lithium diffusion topology. Second, density functional theory is used to determine migration barriers. The accuracy of the empirical potential diffusion topologies, the density functional theory migration barriers, and the overall screening metric are compared against experimental evidence to validate the methodology. The accuracy of the empirical potential model is also evaluated against the density functional theory migration barriers.
by Charles J. Moore.
S.M.
Libros sobre el tema "Diffusion du lithium"
Attiah, Abdul-Redha Dinar. Diffusion of tritium in neutron irradiated lithium fluoride and lithium carbonate. Salford: University of Salford, 1992.
Buscar texto completoLucuta, P. G. Diffusion of tritium in lithium-based fusion blanket ceramics: A review. Chalk River, Ont: Fuel Materials Branch Chalk River Laboratories, 1991.
Buscar texto completoV, George Mathews Pharr. Diffusion, Deformation, and Damage in Lithium-Ion Batteries and Microelectronics. 2014.
Buscar texto completoL'industrie lithique des populations blicquiennes: Organisation des productions et réseaux de diffusion. British Archaeological Reports Oxford Ltd, 2017.
Buscar texto completoCapítulos de libros sobre el tema "Diffusion du lithium"
Julien, Christian y Alain Mauger. "Diffusion". En Rechargeable Lithium Metal Batteries, 1–24. Cham: Springer Nature Switzerland, 2024. https://doi.org/10.1007/978-3-031-67470-9_1.
Texto completoWinkelmann, Jochen. "Diffusion coefficient of lithium(6) in lithium". En Diffusion in Gases, Liquids and Electrolytes, 1328. Berlin, Heidelberg: Springer Berlin Heidelberg, 2017. http://dx.doi.org/10.1007/978-3-540-73735-3_1104.
Texto completoWinkelmann, Jochen. "Diffusion coefficient of lithium(7) in lithium". En Diffusion in Gases, Liquids and Electrolytes, 1879. Berlin, Heidelberg: Springer Berlin Heidelberg, 2018. http://dx.doi.org/10.1007/978-3-662-54089-3_1307.
Texto completoWinkelmann, Jochen. "Diffusion coefficient of lithium(6) in lithium". En Diffusion in Gases, Liquids and Electrolytes, 1880. Berlin, Heidelberg: Springer Berlin Heidelberg, 2018. http://dx.doi.org/10.1007/978-3-662-54089-3_1308.
Texto completoMichaud, G. y G. Beaudet. "Lithium Abundance, Diffusion and Turbulence". En Highlights of Astronomy, 459–60. Dordrecht: Springer Netherlands, 1995. http://dx.doi.org/10.1007/978-94-010-9374-3_78.
Texto completoWinkelmann, Jochen. "Self-diffusion coefficient of lithium". En Diffusion in Gases, Liquids and Electrolytes, 534–35. Berlin, Heidelberg: Springer Berlin Heidelberg, 2017. http://dx.doi.org/10.1007/978-3-540-73735-3_320.
Texto completoLuong, Huu Duc, Thien Lan Tran y Van An Dinh. "Small Polaron–Li-Ion Complex Diffusion in the Cathodes of Rechargeable Li-Ion Batteries". En Lithium-Related Batteries, 29–39. Boca Raton: CRC Press, 2022. http://dx.doi.org/10.1201/9781003263807-2.
Texto completoSkullerud, H. R., T. Eide y Thorarinn Stefansson. "Transverse Diffusion of Lithium Ions in Helium". En Swarm Studies and Inelastic Electron-Molecule Collisions, 81. New York, NY: Springer New York, 1987. http://dx.doi.org/10.1007/978-1-4612-4662-6_9.
Texto completoShokuhfar, Ali, Arash Rezaei, S. M. M. Hadavi, Shahram Ahmadi y H. Azimi. "Effect of Homogenization Process on Hot Rolling of Aluminum-Lithium Alloys". En Defect and Diffusion Forum, 20–25. Stafa: Trans Tech Publications Ltd., 2006. http://dx.doi.org/10.4028/3-908451-36-1.20.
Texto completoWinkelmann, Jochen. "Diffusion coefficient of lithium dodecyl sulfate in water". En Diffusion in Gases, Liquids and Electrolytes, 1476. Berlin, Heidelberg: Springer Berlin Heidelberg, 2018. http://dx.doi.org/10.1007/978-3-662-54089-3_996.
Texto completoActas de conferencias sobre el tema "Diffusion du lithium"
Di Fonso, Roberta, Francesco Simonetti, Remus Teodorescu y Pallavi Bharadwaj. "A Fast Technique for Lithium-Ion Diffusion Coefficient Determination in Batteries". En 2024 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM), 656–60. IEEE, 2024. http://dx.doi.org/10.1109/speedam61530.2024.10609072.
Texto completoRocca, Dario, Matthias Loipersberger, Jérôme F. Gonthier, Robert M. Parrish, Jisook Hong, Byeol Kang, Chanshin Park y Hong Woo Lee. "Towards Quantum Simulations of Lithium Diffusion in Solid State Electrolytes for Battery Applications". En 2024 IEEE International Conference on Quantum Computing and Engineering (QCE), 655–61. IEEE, 2024. https://doi.org/10.1109/qce60285.2024.00082.
Texto completoSuntsov, Sergiy, Sarah Kretschmann, Kore Hasse y Detlef Kip. "Diffusion-Doped Lithium Tantalate Waveguides for Watt-level Nonlinear Frequency Conversion in the Near UV". En CLEO: Science and Innovations, SM4N.2. Washington, D.C.: Optica Publishing Group, 2024. http://dx.doi.org/10.1364/cleo_si.2024.sm4n.2.
Texto completoSivan, V., L. Bui, D. Venkatachalam, S. Bhargava, T. Priest, A. Holland y A. Mitchell. "Etching lithium niobate during Ti diffusion process". En Microelectronics, MEMS, and Nanotechnology, editado por Hark Hoe Tan, Jung-Chih Chiao, Lorenzo Faraone, Chennupati Jagadish, Jim Williams y Alan R. Wilson. SPIE, 2007. http://dx.doi.org/10.1117/12.759612.
Texto completoHoff, Christiana, Sarah Penniston-Dorland, Philip Piccoli, Danny Stockli y Lisa Stockli. "Lithium diffusion in pyrope-almandine rich garnets". En Goldschmidt2022. France: European Association of Geochemistry, 2022. http://dx.doi.org/10.46427/gold2022.12298.
Texto completoGarvey, Brendan, Megan Holycross y Gabe Larouche. "Multi-pathway diffusion of lithium in feldspar". En Goldschmidt 2024. United States of America: Geochemical Society, 2024. https://doi.org/10.46427/gold2024.22282.
Texto completoRUZIN, ARIE, NIKOLAI ABROSIMOV y PIOTR LITOVCHENKO. "STUDY OF LITHIUM DIFFUSION INTO SILICON-GERMANIUM CRYSTALS". En Proceedings of the 10th Conference. WORLD SCIENTIFIC, 2008. http://dx.doi.org/10.1142/9789812819093_0102.
Texto completoWang, Airong, Guangming Wu, Hui-yu Yang, Ming-xia Zhang, Xingmei Fang, Xiao-yun Yang, Bin Zhou y Jun Shen. "Study of lithium diffusion through vanadium pentoxide aerogel". En Sixth International Conference on Thin Film Physics and Applications. SPIE, 2008. http://dx.doi.org/10.1117/12.792630.
Texto completoYost, Cheyenne R., Emily Cahoon, Adam Kent, Scott Toney y Kyle Nunely. "COPPER AND LITHIUM DIFFUSION IN EASTER OREGON SUNSTONES". En Cordilleran Section - 119th Annual Meeting - 2023. Geological Society of America, 2023. http://dx.doi.org/10.1130/abs/2023cd-387527.
Texto completoGan, X. F., F. Zhang, X. Y. He, Y. Z. Cao, J. Z. Yang y X. D. Huang. "Sio2by chemical vapor deposition as lithium diffusion barrier layer for integrated lithium-ion battery". En 2017 International Conference on Electron Devices and Solid-State Circuits (EDSSC). IEEE, 2017. http://dx.doi.org/10.1109/edssc.2017.8333232.
Texto completoInformes sobre el tema "Diffusion du lithium"
Bhatia, Harsh, Attila Gyulassy, Mitchell Ong, Vincenzo Lordi, Erik Draeger, John Pask, Valerio Pascucci y Peer Timo Bremer. Understanding Lithium Solvation and Diffusion through Topological Analysis of First-Principles Molecular Dynamics. Office of Scientific and Technical Information (OSTI), septiembre de 2016. http://dx.doi.org/10.2172/1331475.
Texto completoBalapanov, M. Kh, K. A. Kuterbekov, M. M. Kubenova, R. Kh Ishembetov, B. M. Akhmetgaliev y R. A. Yakshibaev. Effect of lithium doping on electrophysical and diffusion proper-ties of nonstoichiometric superionic copper selenide Cu1.75Se. Phycal-Technical Society of Kazakhstan, diciembre de 2017. http://dx.doi.org/10.29317/ejpfm.2017010203.
Texto completoFriend, James, An Huang, Ping Liu y Haodong Liu. Final project report for: Rapid charging made practical in graphite-based lithium batteries: surface-acoustic wave turbulent electrolyte mixing to overcome diffusion limited charging rates. Office of Scientific and Technical Information (OSTI), abril de 2021. http://dx.doi.org/10.2172/1778016.
Texto completoStotler, D. P., C. H. Skinner, W. R. Blanchard, P. S. Krstic, H. W. Kugel, H. Schneider y L. E. Zakharov. Simulation of Diffusive Lithium Evaporation Onto the NSTX Vessel Walls. Office of Scientific and Technical Information (OSTI), diciembre de 2010. http://dx.doi.org/10.2172/1001673.
Texto completoEnvironmental Assessment for the sale of excess lithium hydroxide stored at the Oak Ridge K-25 Site and the Portsmouth Gaseous Diffusion Plant. Office of Scientific and Technical Information (OSTI), abril de 1993. http://dx.doi.org/10.2172/10173192.
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