Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
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Showing 1 to 10 of 10 for “"Next Generation Batteries"”.
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Development and characterization of next generation batteries
… grid. Despite significant advancements in Li-ion batteries over the last few decades, the current Li-ion battery has almost reached its limit in terms of energy density. Even when fully developed, the highest energy density the Li-ion battery can deliver is not enough to meet the market demand for …
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Investigation of non-intercalation electrode materials for next-generation batteries
… growing, the demands of secondary rechargeable batteries with high energy density increase dramatically. Conversion and alloying electrodes for secondary rechargeable batteries have been studied intensively as alternatives to intercalation materials as they can provide 2 to 5 times larger …
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Electrodeposition and speciation processes of multivalent metals for next generation batteries
Made available in DSpace on 2020-10-07T22:48:06Z (GMT). No. of bitstreams: 3 TA-DISSERTATION-2020.pdf: 4971482 bytes, checksum: 0f3c243cc42c7c69a390ca8a96c80a45 (MD5) LICENSE.txt: 4203 bytes, checksum: 5e1abe676aebe4555d7f7816e803330c (MD5) PROQUEST_LICENSE.txt: 4549 bytes, checksum: …
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Mechanical design of flow batteries
… the design of low-cost, high-efficiency flow batteries. Researchers are searching for next-generation battery materials, and this thesis presents a systems analysis encompassing static and moving electrode architectures that identifies which architecture is most appropriate for which materials …
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Studies on Chemical and Electrochemical Stability of Li-stuffed Garnets for Next Generation Lithium Batteries
State-of-the-art lithium-ion batteries are responsible for the portable electronics revolution, enabling the use of cell phones, laptops, and other gadgets. However, even when fully developed, the energy density and safety are insufficient to meet the demands in electric vehicles and grid storage. …
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Hierarchical Carbon Structures for Advanced High Areal Capacity Lithium-Ion Battery Electrodes
… calls for a matching development in lithium-ion batteries (LIBs) that offer high power density, energy density, and long cycle life. However, LIBs based on traditional layered metal oxide cathodes and graphite anodes are quickly approaching their specific energy limits. The exploration of …
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Investigation of alternative batteries systems beyond lithium-ion batteries
… an increasing demand for state-of-the-art Li-ion batteries. Meanwhile, alternatives to current Li-ion batteries are proposed to improve battery safety, energy density, C-rate, etc. Approaches towards such alternatives include the utilization of novel electrolytes, anode and cathode materials, and …
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Continuum modeling of electro-chemo-mechanical phenomena in all-solid-state batteries
Solid-State-Batteries (SSBs) present a promising technology for next-generation batteries due to their superior properties including increased energy density and safer electrolyte design. Traditional SSB-architecture features a Lithium-metal anode, a solid-state composite cathode, and a stiff …
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Immersed Interface Adaptive Mesh Refinement Methods for Lithium-ion Battery Simulations
… sustainable energy solutions. Lithium-ion batteries (LIBs) are favoured in the battery sector because they possess a number of useful properties, such as high energy and power density, low self-discharge rate, and a long cycle life, to name a few [5, 6]. However, several challenges still …
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Quantitative Solid Electrolyte Interphase-Based Descriptors for Lithium Liquid Electrolyte Design
Energy density requirements for next-generation batteries make the Li metal anode a key candidate to replace graphite in Li-ion batteries due to Li’s improved capacity (3,860 mAh/g vs. 372 mAh/g). However, Li anodes display lower Coulombic efficiency (CE, <99.9%) than graphite (>99.95%), resulting …