The structural response to electrochemical cycling of the components within a commercial Li-ion battery (LiCoO2 cathode, graphite anode) is shown through in situ neutron diffraction. Lithuim insertion and extraction is observed in both the cathode and anode. In particular, reversible Li incorporation into both layered and spinel-type LiCoO2 phases that comprise the cathode is shown and each of these components features several phase transitions attributed to Li content and correlated with the state-of-charge of the battery. At the anode, a constant cell voltage correlates with a stable lithiated graphite phase. Transformation to de-lithiated graphite at the discharged state is characterised by a sharp decrease in both structural cell parame...
In situ high-resolution neutron powder diffraction along with electrochemical analysis was applied t...
The design and performance of a novel in-situ electrochemical cell that greatly facilitates the neut...
Anode and cathode materials, graphite and LiCoO2, are studied by neutron diffraction under “in opera...
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...
This work uses real-time in situ neutron powder diffraction to study the electrode lattice response ...
Commercial NMC cells of 18650-type based on a Lix(Ni0.5Mn0.3Co0.2)O2 cathode and a graphitic anode w...
The layered oxide compounds xLi2MnO3·(1 - x)LiMO2 (M=Ni, Mn, Co) are of great interest as positive e...
A combination of high-resolution neutron powder diffraction, energy-dependent cold-neutron radiograp...
An electrochemical cell for in-situ neutron powder diffraction studies of electrode materials for li...
© 2019 The Chemical Society Located in Taipei & Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim LiCoO2 (L...
Lithium-ion batteries are nowadays widely used in consumer electronics and electric vehicles. Howev...
International audienceThe high penetration ability of neutrons and dramatic character of crystal str...
Carbonate-based electrolytes in Li-ion batteries exhibit long range order in a frozen state, which e...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
In situ high-resolution neutron powder diffraction along with electrochemical analysis was applied t...
The design and performance of a novel in-situ electrochemical cell that greatly facilitates the neut...
Anode and cathode materials, graphite and LiCoO2, are studied by neutron diffraction under “in opera...
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...
This work uses real-time in situ neutron powder diffraction to study the electrode lattice response ...
Commercial NMC cells of 18650-type based on a Lix(Ni0.5Mn0.3Co0.2)O2 cathode and a graphitic anode w...
The layered oxide compounds xLi2MnO3·(1 - x)LiMO2 (M=Ni, Mn, Co) are of great interest as positive e...
A combination of high-resolution neutron powder diffraction, energy-dependent cold-neutron radiograp...
An electrochemical cell for in-situ neutron powder diffraction studies of electrode materials for li...
© 2019 The Chemical Society Located in Taipei & Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim LiCoO2 (L...
Lithium-ion batteries are nowadays widely used in consumer electronics and electric vehicles. Howev...
International audienceThe high penetration ability of neutrons and dramatic character of crystal str...
Carbonate-based electrolytes in Li-ion batteries exhibit long range order in a frozen state, which e...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
In situ high-resolution neutron powder diffraction along with electrochemical analysis was applied t...
The design and performance of a novel in-situ electrochemical cell that greatly facilitates the neut...
Anode and cathode materials, graphite and LiCoO2, are studied by neutron diffraction under “in opera...