The charging rates of commercial high-energy Li-ion cells are limited by the manufacturer's specifications leading to lengthy charging times. However, these cells are typically capable of much faster charging, if one ensures that the thermal and electrode-specific voltage profiles do not exceed safety limits. Unfortunately, precise and in-situ measurements of these parameters have not been achieved to date without altering the operation of these cells. Here we present a method to assess the maximum current for commercial 18650s, using novel instrumentation methods enabling in operando measurements. We found the maximum charging current that could be safely applied to the evaluated high-energy cells is 6.7 times higher than the manufacturer-...
Commercial lithium ion cells with different power: energy ratios were disassembled, to allow the ele...
Six pouch-format cells comprising a carbon anode and nickel-cobalt-manganese (NCM) cathode are chara...
The study proposes two novel fast-charging strategies for lithium-ion batteries that prevent or mini...
The charging rates of commercial high-energy Li-ion cells are limited by the manufacturer's specific...
Lithium-ion is increasingly the technology of choice for battery-powered systems. Current cell perfo...
Lithium-ion is increasingly the technology of choice for battery-powered systems. Current cell perfo...
The impacts on battery cell ageing from high current operation are investigated using commercial cel...
In reference to IEEE copyrighted material which is used with permission in this thesis, the IEEE doe...
In the recent years, lithium-ion batteries have become the battery technology of choice for portable...
One of the major challenges that limits the fast charging of Lithium-ion batteries is Lithium (Li) p...
This thesis begins with a literature review of lithium-ion battery behaviour. Emphasis is placed on ...
Despite fast technological advances, the worldwide adoption of electric vehicles (EVs) is still hamp...
Rapid development of renewable energy technologies and EV (Electric Vehicle)/PHEV (Plug-in Hybrid El...
In the recent years, the sustainable energy demand is growing among the civil and industrial sectors...
The mass adoption of electric vehicles is hindered by the inadequate extreme fast charging (XFC) per...
Commercial lithium ion cells with different power: energy ratios were disassembled, to allow the ele...
Six pouch-format cells comprising a carbon anode and nickel-cobalt-manganese (NCM) cathode are chara...
The study proposes two novel fast-charging strategies for lithium-ion batteries that prevent or mini...
The charging rates of commercial high-energy Li-ion cells are limited by the manufacturer's specific...
Lithium-ion is increasingly the technology of choice for battery-powered systems. Current cell perfo...
Lithium-ion is increasingly the technology of choice for battery-powered systems. Current cell perfo...
The impacts on battery cell ageing from high current operation are investigated using commercial cel...
In reference to IEEE copyrighted material which is used with permission in this thesis, the IEEE doe...
In the recent years, lithium-ion batteries have become the battery technology of choice for portable...
One of the major challenges that limits the fast charging of Lithium-ion batteries is Lithium (Li) p...
This thesis begins with a literature review of lithium-ion battery behaviour. Emphasis is placed on ...
Despite fast technological advances, the worldwide adoption of electric vehicles (EVs) is still hamp...
Rapid development of renewable energy technologies and EV (Electric Vehicle)/PHEV (Plug-in Hybrid El...
In the recent years, the sustainable energy demand is growing among the civil and industrial sectors...
The mass adoption of electric vehicles is hindered by the inadequate extreme fast charging (XFC) per...
Commercial lithium ion cells with different power: energy ratios were disassembled, to allow the ele...
Six pouch-format cells comprising a carbon anode and nickel-cobalt-manganese (NCM) cathode are chara...
The study proposes two novel fast-charging strategies for lithium-ion batteries that prevent or mini...