The performance of lithium-ion batteries is determined by the architecture and properties of electrodes formed during manufacturing, particularly in the drying process when solvent is removed and the electrode structure is formed. Temperature is one of the most dominant parameters that influences the process, and therefore a comparison of temperature effects on both NMC622-based cathodes (PVDF-based binder) and graphite-based anodes (water-based binder) dried at RT, 60, 80, 100 and 120 °C has been undertaken. X-ray computed tomography showed that NMC622 particles concentrated at the surface of the cathode coating except when dried at 60 °C. However, anodes showed similar graphite distributions at all temperatures. The discharge capacities f...
Megtec Systems pilot-plant scale continuous convective coater. The data was generated as part of an ...
Megtec Systems pilot-plant scale continuous convective coater. The data was generated as part of an ...
Polymeric binder distribution within electrodes is crucial to guarantee the electrochemical performa...
The performance of lithium-ion batteries is determined by the architecture and properties of electro...
Lithium-ion battery manufacturing chain is extremely complex with many controllable parameters espec...
This work was supported by the Faraday Institution (grant number FIRG015).Peer reviewedPostprin
Lithium-ion battery manufacturing chain is extremely complex with many controlable parameters especi...
This work was supported by the Faraday Institution [EP/ S003053/1 grant number FIRG015]. PRS would l...
The drying process of electrodes might seem to be a simple operation, but it has profound effects on...
The drying process is a crucial step in electrode manufacture that may lead to spatial inhomogeneiti...
The electrode drying process is a crucial step in the manufacturing of lithium-ion batteries and can...
The understanding of traditional battery manufacturing operating conditions on electrode structure a...
The effect of coating parameters of NMC622 cathodes and graphite anodes on their physical structure ...
Porous, nanostructured Li(NiₓCo$_{y}$Mn)O₂ (NCM) achieves an improvement in the fast-charging capabi...
In this work, a detailed study of the drying of battery electrodes of different thicknesses is prese...
Megtec Systems pilot-plant scale continuous convective coater. The data was generated as part of an ...
Megtec Systems pilot-plant scale continuous convective coater. The data was generated as part of an ...
Polymeric binder distribution within electrodes is crucial to guarantee the electrochemical performa...
The performance of lithium-ion batteries is determined by the architecture and properties of electro...
Lithium-ion battery manufacturing chain is extremely complex with many controllable parameters espec...
This work was supported by the Faraday Institution (grant number FIRG015).Peer reviewedPostprin
Lithium-ion battery manufacturing chain is extremely complex with many controlable parameters especi...
This work was supported by the Faraday Institution [EP/ S003053/1 grant number FIRG015]. PRS would l...
The drying process of electrodes might seem to be a simple operation, but it has profound effects on...
The drying process is a crucial step in electrode manufacture that may lead to spatial inhomogeneiti...
The electrode drying process is a crucial step in the manufacturing of lithium-ion batteries and can...
The understanding of traditional battery manufacturing operating conditions on electrode structure a...
The effect of coating parameters of NMC622 cathodes and graphite anodes on their physical structure ...
Porous, nanostructured Li(NiₓCo$_{y}$Mn)O₂ (NCM) achieves an improvement in the fast-charging capabi...
In this work, a detailed study of the drying of battery electrodes of different thicknesses is prese...
Megtec Systems pilot-plant scale continuous convective coater. The data was generated as part of an ...
Megtec Systems pilot-plant scale continuous convective coater. The data was generated as part of an ...
Polymeric binder distribution within electrodes is crucial to guarantee the electrochemical performa...