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Pegmatites. --- Lithium mines and mining. --- Lithium industry.
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In this work, novel methods are introduced for characterizing the thermal and electrochemical behavior of lithium ion cells. Based on these methods a modeling approach is introduced which allows for the discreet description of four separate domains (both static and dynamic electrochemical and thermal behaviors). The adaption to a wide variety of electrode materials, scalable accuracy and fully automatable parameterization are made possible by the strict separation of model domains.
Verfahren --- Modellierung --- Batterie --- Lithium-Ionen --- Impedanzspektroskopie
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Lithium ion batteries --- Photovoltaic power systems --- Research.
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Automobiles --- Lithium ion batteries --- Batteries --- Research
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Lithium. --- Chemical engineering. --- Lithium --- Lithium industry --- Alkali metals --- Chemical industry --- Nonferrous metal industries --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Engineering --- Chemistry, Technical --- Metallurgy --- Industrial applications. --- Safety measures.
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Atomic layer deposition --- Lithium ion batteries --- Nanotechnology --- Research --- Research
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Nanotechnology and lithium-ion battery technology will both play a major role in helping the world solve its growing energy and environmental challenges. Nanotechnology for Lithium-Ion Batteries explores where the two fields converge, with fresh insights into the complex relationship between these rapidly growing areas of research. This book covers the basic concepts of nanotechnology, how they relate to lithium-ion batteries, and the effects of using nanomaterials to enhance battery performance. In addition to taking an in-depth look at the emerging research, this book will explore how new discoveries will impact existing and emerging markets, including those related to consumer electronics, automotive technology, and smart grid technology.
Lithium cells. --- Lithium ion batteries. --- Nanotechnology. --- Lithium ion batteries --- Nanostructured materials --- Electrical & Computer Engineering --- Chemistry --- Physical Sciences & Mathematics --- Engineering & Applied Sciences --- Physical & Theoretical Chemistry --- Electrical Engineering --- Materials --- Molecular technology --- Nanoscale technology --- Cells, Lithium ion --- Electrochemical cells, Lithium ion --- LIBs (Lithium ion batteries) --- Li-ion batteries --- Lithium ion cells --- Lithium ion electrochemical cells --- Chemistry. --- Electrochemistry. --- Nanochemistry. --- Electric power production. --- Energy Technology. --- High technology --- Storage batteries --- Energy Systems. --- Physical sciences --- Nanoscale chemistry --- Chemistry, Analytic --- Nanoscience --- Analytical chemistry --- Energy systems. --- Chemistry, Physical and theoretical
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One-Dimensional Nanostructures: Electrospinning Technique and Unique Nanofibers is a comprehensive book depicting the electrospinning technique and related 1D unique electrospun nanofibers. The first part of the book focuses on electrospinning technique, with chapters describing Electrospinning setup, electrospinning theories, and related working parameter. The second part of the book describes in detail specific topics on how to control the electrospun fiber properties such as how to control the fiber direction, how to control the fiber surface morphology, how to control the fiber structure, and how to construct 3D structures by electrospun fibers. The final part of the book depicts the applications of the electrospun nanofibers, with sections describing in detail specific fields such as electrospun nanofiber reinforcement, filtration, electronic devices, lithium-ion batteries, fuel cells, biomedical field, and so on. One-Dimensional Nanostructures: Electrospinning Technique and Unique Nanofibers is designed to bring state-of-the-art on electrospinning together into a single book and will be valuable resource for scientists in the electrospinning field and other scientists involved in biomedical field, mechanical field, materials, and energy field. Dr. Zhenyu Li is an associate professor at the Dept. of Chemistry, Jilin University, Changchun, P. R. China. Currently, he also holds the position in Australian Future Fibres Research & Innovation Centre, Institute for Frontier Materials, Deakin University, Geelong, Victoria, Australia. Dr. Ce Wang is a professor at the Dept. of Chemistry, Jilin University, Changchun, P. R. China.
Chemical structure --- Chemistry --- Electrical engineering --- Applied physical engineering --- brandstofcellen --- moleculen --- nanotechniek --- lithium-ion batterijen --- chemie --- atomen
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Lithium --- Nuclear reactors --- Isotopes --- Management. --- Cooling. --- United States. --- Rules and practice.
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