Although the growth of the solid electrolyte interphase is considered one of the most important degradation phenomena of lithium-ion cells, the mechanism is not yet fully understood. In this work, we present a detailed post-mortem analysis of calendar aged large-format graphite/Li(Ni1/3Mn1/3Co1/3)O-2-based lithium-ion cells. X-ray photoelectron spectroscopy depth profiling reveals a distinct coherence of the growth of the solid electrolyte interphase with the phases of the lithiated graphite. Since the graphite phases are in direct correlation with the state of charge and the anode potential, the thickness of the SEI resulting from calendar aging is determined by the storage state of charge. The composition of the SEI has been analyzed as m...
Cell aging is a major issue in battery cells, as it affects the application capabilities. The mechan...
EMR - Energy and Material Research, MALAGA, ESPAGNE, 20-/06/2012 - 22/06/2012Graphite/LFP commercial...
International audienceMetallic lithium deposition is a typical aging mechanism observed in lithium-i...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
Application of Li-ion batteries for transportation not only requires long cycling life but also the ...
The understanding of the aging behavior of lithium ion batteries in automotive and energy storage ap...
AbstractAn in-depth historical and current review is presented on the science of lithium-ion battery...
During cyclic aging of lithium-ion batteries the formation of a μm-thick covering layer on top of th...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
EMR - Energy and Material Research, MALAGA, ESPAGNE, 20-/06/2012 - 22/06/2012Graphite/LFP commercial...
Cell aging is a major issue in battery cells, as it affects the application capabilities. The mechan...
EMR - Energy and Material Research, MALAGA, ESPAGNE, 20-/06/2012 - 22/06/2012Graphite/LFP commercial...
International audienceMetallic lithium deposition is a typical aging mechanism observed in lithium-i...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
In this thesis over 50 cylindrical LiFePO4|Graphite cells with a capacity of 8 Ah are analyzed, util...
Application of Li-ion batteries for transportation not only requires long cycling life but also the ...
The understanding of the aging behavior of lithium ion batteries in automotive and energy storage ap...
AbstractAn in-depth historical and current review is presented on the science of lithium-ion battery...
During cyclic aging of lithium-ion batteries the formation of a μm-thick covering layer on top of th...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
EMR - Energy and Material Research, MALAGA, ESPAGNE, 20-/06/2012 - 22/06/2012Graphite/LFP commercial...
Cell aging is a major issue in battery cells, as it affects the application capabilities. The mechan...
EMR - Energy and Material Research, MALAGA, ESPAGNE, 20-/06/2012 - 22/06/2012Graphite/LFP commercial...
International audienceMetallic lithium deposition is a typical aging mechanism observed in lithium-i...