Integrity and uniformity are crucial factors for stable, safe, robust and well-predicted operation of Li-ion batteries. The uniformity of lithium distribution in the graphite anode in fully charged state was studied by a combination of spatially-resolved time-of-flight neutron diffraction, powder diffraction using synchrotron radiation and electrochemical measurements. Studies were carried out on a series of NCA|C Li-ion cells of 18650-type with various cycle numbers. Experimentally obtained lithium distribution under in operando and ex situ conditions have been found in fair agreement and revealed a non-uniform character of lithiation in the graphite anode in charged state, where the degree of heterogeneity increases with the number of cyc...
Since their commercialization in 1991, lithium-ion batteries (LIBs) have revolutionized our way of l...
Spatially-resolved neutron diffraction has been applied to probe the lithium distribution in radial ...
L’électrode négative des batteries lithium-ion est communément en graphite. Bien qu’ayant une capaci...
The two‐dimensional lithium distribution in the graphite anode was non‐destructively probed by spati...
Spatially-resolved neutron powder diffraction with a gauge volume of 2 × 2 × 20 mm$^{3}$ has been ap...
Carbonate-based electrolytes in Li-ion batteries exhibit long range order in a frozen state, which e...
The distribution of lithium inside electrodes of a commercial Li-ion battery of 18650-type with LiFe...
Synchrotron X-ray diffraction computed tomography (XRD-CT) was employed to study a commercial 18650 ...
A combination of high-resolution neutron powder diffraction, energy-dependent cold-neutron radiograp...
International audienceHeterogeneous potential and lithium distribution inside lithium ion batteries ...
We demonstrate the lithiation process in graphitic anodes using in situ neutron radiography and diff...
Uniformity of the crystal structure of battery electrodes inside a commercial prismatic Li-ion batte...
Anode and cathode materials, graphite and LiCoO2, are studied by neutron diffraction under “in opera...
The structural response to electrochemical cycling of the components within a commercial Li-ion batt...
We report an in-situ neutron diffraction study of a large format pouch battery cell. The succession ...
Since their commercialization in 1991, lithium-ion batteries (LIBs) have revolutionized our way of l...
Spatially-resolved neutron diffraction has been applied to probe the lithium distribution in radial ...
L’électrode négative des batteries lithium-ion est communément en graphite. Bien qu’ayant une capaci...
The two‐dimensional lithium distribution in the graphite anode was non‐destructively probed by spati...
Spatially-resolved neutron powder diffraction with a gauge volume of 2 × 2 × 20 mm$^{3}$ has been ap...
Carbonate-based electrolytes in Li-ion batteries exhibit long range order in a frozen state, which e...
The distribution of lithium inside electrodes of a commercial Li-ion battery of 18650-type with LiFe...
Synchrotron X-ray diffraction computed tomography (XRD-CT) was employed to study a commercial 18650 ...
A combination of high-resolution neutron powder diffraction, energy-dependent cold-neutron radiograp...
International audienceHeterogeneous potential and lithium distribution inside lithium ion batteries ...
We demonstrate the lithiation process in graphitic anodes using in situ neutron radiography and diff...
Uniformity of the crystal structure of battery electrodes inside a commercial prismatic Li-ion batte...
Anode and cathode materials, graphite and LiCoO2, are studied by neutron diffraction under “in opera...
The structural response to electrochemical cycling of the components within a commercial Li-ion batt...
We report an in-situ neutron diffraction study of a large format pouch battery cell. The succession ...
Since their commercialization in 1991, lithium-ion batteries (LIBs) have revolutionized our way of l...
Spatially-resolved neutron diffraction has been applied to probe the lithium distribution in radial ...
L’électrode négative des batteries lithium-ion est communément en graphite. Bien qu’ayant une capaci...