In this study, we report on the operational parameter dependent degradation mechanisms occurring in cycled large-format automotive lithium-ion cells. The comprehension of these mechanisms is a prerequisite for design and operation of long-life lithium-ion cells. The degradation mechanisms are evaluated in dependence of cycle temperature, cut-off voltage, depth of discharge and discharge current, performing an extensive post-mortem analysis on cells subjected to a one-year-long cycle test. The main degradation mechanisms in the cells cycled at 60 °C are the large formation of gas, gas-assisted lithium plating, and, additionally, temperature-accelerated growth of the solid electrolyte interphase (SEI), as revealed by XPS depth-profiling. The ...
Driven by the rise of the electric automotive industry, the Li-ion battery market is in strong expan...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
The cycle aging of a commercial 18650 lithium-ion battery with graphite anode and lithium nickel man...
In this study, we report on the operational parameter dependent degradation mechanisms occurring in ...
In this study, we report on the operational parameter dependent degradation mechanisms occurring in ...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
Material degradation is an issue limiting the life-time of Lithium-ion batteries. This study conduct...
The understanding of the aging behavior of lithium ion batteries in automotive and energy storage ap...
Battery electric vehicles are a cost intensive investment, caused by the energy storage systems, whi...
Lithium-ion batteries have great potential in electromobility and stationary applications. Reusing a...
Battery electric vehicles are a cost intensive investment, caused by the energy storage systems, whi...
Driven by the rise of the electric automotive industry, the Li-ion battery market is in strong expan...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
The cycle aging of a commercial 18650 lithium-ion battery with graphite anode and lithium nickel man...
In this study, we report on the operational parameter dependent degradation mechanisms occurring in ...
In this study, we report on the operational parameter dependent degradation mechanisms occurring in ...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
This PhD thesis represents a first milestone in the evaluation of the calendar and cycl...
Material degradation is an issue limiting the life-time of Lithium-ion batteries. This study conduct...
The understanding of the aging behavior of lithium ion batteries in automotive and energy storage ap...
Battery electric vehicles are a cost intensive investment, caused by the energy storage systems, whi...
Lithium-ion batteries have great potential in electromobility and stationary applications. Reusing a...
Battery electric vehicles are a cost intensive investment, caused by the energy storage systems, whi...
Driven by the rise of the electric automotive industry, the Li-ion battery market is in strong expan...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
The cycle aging of a commercial 18650 lithium-ion battery with graphite anode and lithium nickel man...