Commercial NMC cells of 18650-type based on a Lix(Ni0.5Mn0.3Co0.2)O2 cathode and a graphitic anode were studied in situ using a combination of high-resolution monochromatic neutron powder diffraction and electrochemical analysis. The structural changes of the electrode materials during cell charge/discharge have been determined using Rietveld refinement and single profile decomposition techniques. A transformation of the graphitic anode to LiC12 and LiC6 through the formation of higher ordered lithium intercalated carbons was observed. A different behavior of electrochemically-driven lattice distortion was observed for NMC material in comparison to LixCoO2 and its influence on the overall cell performance has been discussed in brief. Detail...
The crystal structure of the 18650-type Li-ion cell constituents has been studied at ambient tempera...
An electrochemical cell for in-situ neutron powder diffraction studies of electrode materials for li...
A lab-made, multilayered Li-ion battery pouch cell is investigated using in-operando neutron powder ...
The structural response to electrochemical cycling of the components within a commercial Li-ion batt...
Positive electrode materials remain a limiting factor for the energy density of lithium-ion batterie...
The layered oxide compounds xLi2MnO3·(1 - x)LiMO2 (M=Ni, Mn, Co) are of great interest as positive e...
We report an in-situ neutron diffraction study of a large format pouch battery cell. The succession ...
Neutron diffraction is a powerful technique to localize and quantify lithium in battery electrode ma...
In this study, the application of neutron powder diffraction on studying the time-resolved structura...
In this study, the application of neutron powder diffraction on studying the time-resolved structura...
A combination of high-resolution neutron powder diffraction, energy-dependent cold-neutron radiograp...
The design and performance of a novel in-situ electrochemical cell that greatly facilitates the neut...
Abstract Fast charging (<15 min) of lithium‐ion batteries (LIBs) for electrical vehicles (EVs) is wi...
In situ high-resolution neutron powder diffraction along with electrochemical analysis was applied t...
This work uses real-time in situ neutron powder diffraction to study the electrode lattice response ...
The crystal structure of the 18650-type Li-ion cell constituents has been studied at ambient tempera...
An electrochemical cell for in-situ neutron powder diffraction studies of electrode materials for li...
A lab-made, multilayered Li-ion battery pouch cell is investigated using in-operando neutron powder ...
The structural response to electrochemical cycling of the components within a commercial Li-ion batt...
Positive electrode materials remain a limiting factor for the energy density of lithium-ion batterie...
The layered oxide compounds xLi2MnO3·(1 - x)LiMO2 (M=Ni, Mn, Co) are of great interest as positive e...
We report an in-situ neutron diffraction study of a large format pouch battery cell. The succession ...
Neutron diffraction is a powerful technique to localize and quantify lithium in battery electrode ma...
In this study, the application of neutron powder diffraction on studying the time-resolved structura...
In this study, the application of neutron powder diffraction on studying the time-resolved structura...
A combination of high-resolution neutron powder diffraction, energy-dependent cold-neutron radiograp...
The design and performance of a novel in-situ electrochemical cell that greatly facilitates the neut...
Abstract Fast charging (<15 min) of lithium‐ion batteries (LIBs) for electrical vehicles (EVs) is wi...
In situ high-resolution neutron powder diffraction along with electrochemical analysis was applied t...
This work uses real-time in situ neutron powder diffraction to study the electrode lattice response ...
The crystal structure of the 18650-type Li-ion cell constituents has been studied at ambient tempera...
An electrochemical cell for in-situ neutron powder diffraction studies of electrode materials for li...
A lab-made, multilayered Li-ion battery pouch cell is investigated using in-operando neutron powder ...