A novel electroanalytical method, the intermittent current interruption (ICI) technique, has recently been promoted as a versatile tool for battery analysis and diagnostics. The technique enables frequent and continuous measurement of battery resistance, which then undergoes statistical analysis. Here, this method is implemented for commercial Li-ion cylindrical cells, and combined with a physics-based finite element model (FEM) of the battery to better interpret the measured resistances. Ageing phenomena such as solid electrolyte interphase (SEI) formation and metallic Li plating on the surface of the negative graphite particles are considered in the model. After validation, a long-term cycling simulation is conducted to mimic the ageing s...
The long-term degradation behavior of lithium-ion batteries is directly related to changes in the in...
Lithium ion batteries undergo chemical and mechanical degradation during operation. The main chemica...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
A novel electroanalytical method, the intermittent current interruption (ICI) technique, has recentl...
In this article, a pioneering study is presented where the intermittent current interruption method ...
The objective of this report was to implement battery cycling and an intermittent current interrupti...
Ageing mechanisms of graphite/NMC Li-ion batteries have been studied using computational methods. Th...
Important hurdles for the market launch of different types of lithium ion batteries are operation se...
Deterioration analysis of aged lithium-ion cells is becoming increasingly important as demand for lo...
The aging mechanisms of Li-ion batteries are introduced in this chapter, and are experimentally inve...
• Combination of EIS, microscopy and FEM to assess ageing in commercial LIBs. • FEM analyses of the ...
Li-ion batteries are widely used in consumer electronics due to their high energy density and curren...
In the first part of his work, the causes for the sudden degradation of useable capacity of lithium-...
Novel research is currently being performed on commercialization of higher capacity anode materials....
In order to run lithium ion batteries in a secure and lifetime optimized way, it is essential to und...
The long-term degradation behavior of lithium-ion batteries is directly related to changes in the in...
Lithium ion batteries undergo chemical and mechanical degradation during operation. The main chemica...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
A novel electroanalytical method, the intermittent current interruption (ICI) technique, has recentl...
In this article, a pioneering study is presented where the intermittent current interruption method ...
The objective of this report was to implement battery cycling and an intermittent current interrupti...
Ageing mechanisms of graphite/NMC Li-ion batteries have been studied using computational methods. Th...
Important hurdles for the market launch of different types of lithium ion batteries are operation se...
Deterioration analysis of aged lithium-ion cells is becoming increasingly important as demand for lo...
The aging mechanisms of Li-ion batteries are introduced in this chapter, and are experimentally inve...
• Combination of EIS, microscopy and FEM to assess ageing in commercial LIBs. • FEM analyses of the ...
Li-ion batteries are widely used in consumer electronics due to their high energy density and curren...
In the first part of his work, the causes for the sudden degradation of useable capacity of lithium-...
Novel research is currently being performed on commercialization of higher capacity anode materials....
In order to run lithium ion batteries in a secure and lifetime optimized way, it is essential to und...
The long-term degradation behavior of lithium-ion batteries is directly related to changes in the in...
Lithium ion batteries undergo chemical and mechanical degradation during operation. The main chemica...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...