Journal of The Electrochemical Society · 2018 · 35 citations · 67 references
Materials ScienceMetal/oxygen BatteriesChemical EngineeringOxygen SolubilityEngineeringCombined TheoreticalElectrochemical Power SourceExperimental StudyEnergy StorageTypical SolventsElectrochemical Energy StorageBatteriesChemistrySeveral Molecular SolventsAqueous BatteryTheoretical ElectrochemistryElectrochemistry
The solubility and the diffusion constant of oxygen in the electrolyte are crucial parameters in the kinetics of metal/oxygen batteries since they govern the discharge current that can be achieved. However, both parameters are often unknown or scatter widely in literature. Evaluating these parameters in typical solvents and electrolytes is therefore essential toward better quantitative understanding and improvement of metal/oxygen batteries. Using oxygen uptake experiments and molecular dynamics simulations, we compare theoretical and experimental approaches to determine oxygen diffusion coefficients in several molecular solvents that are commonly used. We report diffusion coefficients and Henry's law constants of oxygen for a series of glymes with different chain length and perfluorinated solvents, and discuss the benefit of using both experiment and simulation to determine these parameters. In all nine investigated solvents, the difference between simulated and measured diffusion coefficients is small in comparison to the magnitude of the coefficients. The methodology and the reported values for oxygen solubility and diffusivity form a solid starting point for further investigations into more complex electrolyte solutions. Ultimately, they might help to propel research on metal/oxygen batteries even further.
67
William L. Jorgensen, David S. Maxwell, Julian Tirado‐Rives · Journal of the American Chemical Society · 1996 · 15K citations
Organic Molecules, Engineering, Conformational Energetics +13
Ultrastructural Characterization of the Lower Motor System in a Mouse Model of Krabbe Disease
Valentina Cappello, Laura Marchetti, Paola Parlanti et al. · Scientific Reports · 2016 · 13.1K citations · Full text
Li–O2 and Li–S batteries with high energy storage
Peter G. Bruce, Stefan A. Freunberger, Laurence J. Hardwick et al. · Nature Materials · 2011 · 9.3K citations
Electrical Engineering, Engineering, Battery Electrode Materials +8