Polycrystalline Li(Ni,Mn,Co)O2 (NMC) secondary particles are the most common cathode materials for Li-ion batteries. During electrochemical (dis)charge, lithium is believed to diffuse through the bulk and enter (leave) the secondary particle at the surface. Based on this model, smaller particles would cycle faster due to shorter diffusion lengths and larger surface-area-to-volume ratios. In this work, we evaluate this widespread assumption by developing a new high-throughput single-particle electrochemistry platform using the multi-electrode array from neuroscience. By measuring the reaction and diffusion times for 21 individual particles in liquid electrolytes, we find no correlation between the particle size and either the reaction or dif...
Realistic geometry and diffusion coefficients were measured from a single particle LiMn2O4 electrode...
International audienceUnderstanding (de)lithiation heterogeneities in battery materials is key to en...
Recent years have seen a rapidly escalating demand for battery technologies capable of storing more ...
Lithium metal has drawn significant interest as an anode material for next generation lithium (Li) b...
A microscopic model of a lithium battery is developed, which accounts for lithium diffusion within p...
The presented case study provides mesoscopic insights into the state-of-charge (SOC) distribution of...
The performance of a lithium-ion battery can be improved by mixing two or more kinds of cathode acti...
Conventional methods of electrochemical analysis of novel or optimized active materials involve the ...
With operando transmission electron microscopy visualizing solid-solid electrode-electrolyte interfa...
Scanning electrochemical cell microscopy (SECCM) facilitates single particle measurements of battery...
Fast discharge capability of automotive batteries not only affects the acceleration and climbing per...
Lithium-ion batteries with superior capacities and rate performance are needed due to the soaring de...
Ionic movement through solids is one of the unseen operations which maintains the functionality of o...
The development of high performance active storage materials is considered one of the most promising...
Detailed understanding of charge diffusion processes in a lithium-ion battery is crucial to enable i...
Realistic geometry and diffusion coefficients were measured from a single particle LiMn2O4 electrode...
International audienceUnderstanding (de)lithiation heterogeneities in battery materials is key to en...
Recent years have seen a rapidly escalating demand for battery technologies capable of storing more ...
Lithium metal has drawn significant interest as an anode material for next generation lithium (Li) b...
A microscopic model of a lithium battery is developed, which accounts for lithium diffusion within p...
The presented case study provides mesoscopic insights into the state-of-charge (SOC) distribution of...
The performance of a lithium-ion battery can be improved by mixing two or more kinds of cathode acti...
Conventional methods of electrochemical analysis of novel or optimized active materials involve the ...
With operando transmission electron microscopy visualizing solid-solid electrode-electrolyte interfa...
Scanning electrochemical cell microscopy (SECCM) facilitates single particle measurements of battery...
Fast discharge capability of automotive batteries not only affects the acceleration and climbing per...
Lithium-ion batteries with superior capacities and rate performance are needed due to the soaring de...
Ionic movement through solids is one of the unseen operations which maintains the functionality of o...
The development of high performance active storage materials is considered one of the most promising...
Detailed understanding of charge diffusion processes in a lithium-ion battery is crucial to enable i...
Realistic geometry and diffusion coefficients were measured from a single particle LiMn2O4 electrode...
International audienceUnderstanding (de)lithiation heterogeneities in battery materials is key to en...
Recent years have seen a rapidly escalating demand for battery technologies capable of storing more ...