Although lithium plating is one of the most-investigated degradation mechanisms occurring in lithium-ion batteries, many degradation studies still view inhomogeneous lithium plating as an artifact. It is often caused by mechanical stress, gas formation and encapsulation, or temperature and current gradients on account of the cell size. In this work, large-format lithium-ion cells are cycled at conditions harmless on the material level, but cause heavy lithium plating in the center of the commercial cell. Failure analysis requires visual inspection and further material evaluation to identify the reason for malfunction. A combination of temperature gradient and current density gradient evoke a lithium concentration gradient, which equalizes b...
This work conducts a post-mortem analysis of a cycled commercial lithium-ion pouch cell under an ind...
Laboratory-size LiNi0.8Co0.15Al0.05O2/graphite lithium-ion pouch cells were cycled over 100% DOD at ...
Next generation rechargeable lithium metal battery chemistries have the potential to revolutionize e...
Although lithium plating is one of the most-investigated degradation mechanisms occurring in lithium...
In this study, we report on the operational parameter dependent degradation mechanisms occurring in ...
Understanding lithium-ion battery degradation is critical to unlocking their full potential. Poor un...
This work investigates how local cell defects can induce local lithium deposition and dendrite growt...
In an electric vehicle, a large number of lithium-ion cells are connected in parallel. While cells i...
Second-life applications of automotive lithium-ion batteries are currently investigated for grid sta...
AbstractSecond-life applications of automotive lithium-ion batteries are currently investigated for ...
The dissertation is focused on the nondestructive detection and quantification of lithium plating in...
Alongside electrical loads, it is known that temperature has a strong influence on battery behavior ...
Lithium-ion batteries have great potential in electromobility and stationary applications. Reusing a...
Large-format lithium-ion batteries are inherently complicated systems, consisting of many stacks of ...
The goal of this research was to determine how temperature gradients in series-connected lithium-ion...
This work conducts a post-mortem analysis of a cycled commercial lithium-ion pouch cell under an ind...
Laboratory-size LiNi0.8Co0.15Al0.05O2/graphite lithium-ion pouch cells were cycled over 100% DOD at ...
Next generation rechargeable lithium metal battery chemistries have the potential to revolutionize e...
Although lithium plating is one of the most-investigated degradation mechanisms occurring in lithium...
In this study, we report on the operational parameter dependent degradation mechanisms occurring in ...
Understanding lithium-ion battery degradation is critical to unlocking their full potential. Poor un...
This work investigates how local cell defects can induce local lithium deposition and dendrite growt...
In an electric vehicle, a large number of lithium-ion cells are connected in parallel. While cells i...
Second-life applications of automotive lithium-ion batteries are currently investigated for grid sta...
AbstractSecond-life applications of automotive lithium-ion batteries are currently investigated for ...
The dissertation is focused on the nondestructive detection and quantification of lithium plating in...
Alongside electrical loads, it is known that temperature has a strong influence on battery behavior ...
Lithium-ion batteries have great potential in electromobility and stationary applications. Reusing a...
Large-format lithium-ion batteries are inherently complicated systems, consisting of many stacks of ...
The goal of this research was to determine how temperature gradients in series-connected lithium-ion...
This work conducts a post-mortem analysis of a cycled commercial lithium-ion pouch cell under an ind...
Laboratory-size LiNi0.8Co0.15Al0.05O2/graphite lithium-ion pouch cells were cycled over 100% DOD at ...
Next generation rechargeable lithium metal battery chemistries have the potential to revolutionize e...