The dissertation is focused on the nondestructive detection and quantification of lithium plating in commercial lithium-ion batteries. Lithium plating denotes the deposition of metallic lithium on the negative graphite electrode of a lithium-ion battery during charging. This is a severe degradation process followed by capacity loss and impedance rise. Furthermore, the deposited lithium can grow dendritically which poses a serious safety hazard. It is shown that lithium plating can be detected by a new voltage plateau during the discharge step after charging the cell at low temperatures with high currents. Differential analysis of this plateau enables an estimation of the amount of plated lithium. Subsequent cell opening shows that the metal...
Fast charging is one of the main challenges in Lithium-ion battery applications. Especially at low t...
Charging time and range anxiety are two key barriers to wider electric vehicle (EV) adoption. Reduci...
Although lithium plating is one of the most-investigated degradation mechanisms occurring in lithium...
Fast charging of batteries is currently limited, particularly at low temperatures, due to difficulti...
Lithium plating significantly reduces the lifetime of lithium-ion batteries and may even pose a safe...
Within Li-ion batteries, lithium plating is considered as one of the main reasons behind the capacit...
Li-ion battery safety is often threatened by undesirable lithium metal electrodeposition or dendrite...
The desire to move towards the rapid charging of lithium-ion batteries has motivated many researcher...
Lithium plating, induced by fast charging and low-temperature charging, is one of the reasons for ca...
The detection of lithium plating is a key enabler for the development of fast charging techniques. T...
A key challenge for energy storage and conversion technologies is finding simple, reliable methods t...
Enabling metallic-Li negative electrodes is motivated by a significant increase of energy density, b...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
A Li-ion cell does not contain metallic lithium under normal conditions of operation. Under strenuou...
In order to achieve the CO2 emission targets of the German Government, it is necessary to significan...
Fast charging is one of the main challenges in Lithium-ion battery applications. Especially at low t...
Charging time and range anxiety are two key barriers to wider electric vehicle (EV) adoption. Reduci...
Although lithium plating is one of the most-investigated degradation mechanisms occurring in lithium...
Fast charging of batteries is currently limited, particularly at low temperatures, due to difficulti...
Lithium plating significantly reduces the lifetime of lithium-ion batteries and may even pose a safe...
Within Li-ion batteries, lithium plating is considered as one of the main reasons behind the capacit...
Li-ion battery safety is often threatened by undesirable lithium metal electrodeposition or dendrite...
The desire to move towards the rapid charging of lithium-ion batteries has motivated many researcher...
Lithium plating, induced by fast charging and low-temperature charging, is one of the reasons for ca...
The detection of lithium plating is a key enabler for the development of fast charging techniques. T...
A key challenge for energy storage and conversion technologies is finding simple, reliable methods t...
Enabling metallic-Li negative electrodes is motivated by a significant increase of energy density, b...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
A Li-ion cell does not contain metallic lithium under normal conditions of operation. Under strenuou...
In order to achieve the CO2 emission targets of the German Government, it is necessary to significan...
Fast charging is one of the main challenges in Lithium-ion battery applications. Especially at low t...
Charging time and range anxiety are two key barriers to wider electric vehicle (EV) adoption. Reduci...
Although lithium plating is one of the most-investigated degradation mechanisms occurring in lithium...