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Non-equilibrium Thermodynamics of Lithium-Ion Batteries - MIT
A high-energy-density lithium-oxygen battery based on a reversible four-electron conversion to lithium oxide
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Thermodynamic origins of reaction heterogeneity in lithium battery electrodes – Physics World
Entropy measurements can gauge health of lithium-ion batteries | Research | Chemistry World
U Waterloo team shows four-electron conversion for Li-O2 batteries for high energy density; inorganic molten salt electrolyte, high temperature - Green Car Congress
Modern Devices Thermodynamics: Batteries, Fuel Cells and Supercapacitors by Dritan Hoxha (2018, Hardcover) for sale online | eBay
High energy lithium–oxygen batteries – transport barriers and thermodynamics - Energy & Environmental Science (RSC Publishing)
PDF) Thermodynamics, Charge Transfer and Practical Considerations of Solid Boosters in Redox Flow Batteries
Second law of thermodynamics for batteries with vacuum state – Quantum
Breakthrough In Battery Tech Sees Scientists Solve 40-Year-Old Problem
This is a thermodynamics of materials question. | Chegg.com
Forschungszentrum Jülich - Thermodynamic for Lithium-Ion Batteries
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Understanding Li-ion thermodynamic and kinetic behaviors in concentrated electrolyte for the development of aqueous lithium-ion batteries - ScienceDirect
Figure 1 from Modeling of Species and Charge Transport in Li-Ion Batteries Based on Non-equilibrium Thermodynamics | Semantic Scholar
Manganese based layered oxides with modulated electronic and thermodynamic properties for sodium ion batteries | Nature Communications
Lithium-ion batteries: How can thermal runaway be prevented? | Rutronik
Inventions | Free Full-Text | A Thermodynamic Model for Lithium-Ion Battery Degradation: Application of the Degradation-Entropy Generation Theorem
Multi-scale computation methods: Their applications in lithium-ion battery research and development
Thermodynamics of Lithium-Ion Batteries - ScienceDirect