Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering, 2014.Cataloged from PDF version of thesis.Includes bibliographical references (pages 102-119).The transport of lithium ions between the electrolyte-electrode interface and the electrode bulk is an essential and presently rate limiting process in the high-current operation of lithium-ion batteries. Despite their importance, few methods exist to experimentally investigate these macroscopic diffusion processes and, as a result, much remains unknown regarding their underlying mechanisms and the resulting macroscopic transport. Gradient nuclear magnetic resonance measurements are a mature and effective means of investigating macroscopic transpor...
Positive- and negative-muon spin rotation and relaxation (mu(+/-) SR) was first used to investigate ...
Dans les matériaux de batterie, le contrôle de la mobilité des cations lithium est la clé pour repou...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Lithium ion conductors and concomitantly the topic of Li solid state diffusion have become enormousl...
AbstractDiffusion of Li+ ionsin solidsisa basic principle behindthe operationof Li-ion batteries. Su...
In situ NMR measurements of the diffusion coefficients, including an estimate of signal strength, of...
Lithium ion conductors and concomitantly the topic of Li solid state diffusion have become enormousl...
Lithium diffusion pathways have been determined in three dimensions using molecular dynamics simulat...
Lithium diffusion pathways have been determined in three dimensions using molecular dynamics simulat...
The main impediments to the widespread acceptance of electric drive vehicles are the cost, energy-st...
Fundamental research on lithium ion dynamics in solids is important to develop functional materials ...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
The present talk will briefly summarize our activities in the FOR 1277 “Mobility of Li Ions in Solid...
Ionic movement through solids is one of the unseen operations which maintains the functionality of o...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
Positive- and negative-muon spin rotation and relaxation (mu(+/-) SR) was first used to investigate ...
Dans les matériaux de batterie, le contrôle de la mobilité des cations lithium est la clé pour repou...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Lithium ion conductors and concomitantly the topic of Li solid state diffusion have become enormousl...
AbstractDiffusion of Li+ ionsin solidsisa basic principle behindthe operationof Li-ion batteries. Su...
In situ NMR measurements of the diffusion coefficients, including an estimate of signal strength, of...
Lithium ion conductors and concomitantly the topic of Li solid state diffusion have become enormousl...
Lithium diffusion pathways have been determined in three dimensions using molecular dynamics simulat...
Lithium diffusion pathways have been determined in three dimensions using molecular dynamics simulat...
The main impediments to the widespread acceptance of electric drive vehicles are the cost, energy-st...
Fundamental research on lithium ion dynamics in solids is important to develop functional materials ...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
The present talk will briefly summarize our activities in the FOR 1277 “Mobility of Li Ions in Solid...
Ionic movement through solids is one of the unseen operations which maintains the functionality of o...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
Positive- and negative-muon spin rotation and relaxation (mu(+/-) SR) was first used to investigate ...
Dans les matériaux de batterie, le contrôle de la mobilité des cations lithium est la clé pour repou...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...