International audienceWe investigated the first charge cycle of LaNi3.6Co0.7Al0.4Mn0.3 (LaMM) during electrochemical reduction in a 6N KOD (potassium deuteroxide) electrolyte, corresponding to conditions of commercially used batteries by means of in situ neutron powder diffraction. Our measurement allowed to directly analyze the phase range of the α and β phases and the related volume change as a function of the charge transfer. The intercalation of hydrogen was followed in a home-made electrochemical cell, installed on the high intensity neutron powder diffractometer (DMC) at the Swiss continuous spallation neutron source. Compared to previous investigations following mostly in situ charging under pressure (following pressure-composition-t...
International audienceIn situ neutron diffraction (ND) during battery operation is becoming a promis...
Neutron diffraction is a powerful technique to localize and quantify lithium in battery electrode ma...
The structural response to electrochemical cycling of the components within a commercial Li-ion batt...
The structural properties of two mechanically activated commercial LaNi5 type battery materials and ...
Electrochemical reactions at both positive and negative electrodes in a nickel metal hydride (Ni-MH)...
La2MgNi9-related alloys are superior metal hydride battery anodes as compared to the commercial AB5 ...
An electrochemical cell for in-situ neutron powder diffraction studies of electrode materials for li...
The intermetallic La<sub>2</sub>MgNi<sub>9</sub> has been investigated as negative electrode materia...
AbstractA novel neutron diffraction cell has been constructed to allow in-situ studies of the struct...
A novel neutron diffraction cell has been constructed to allow in-situ studies of the structural cha...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
The performance of rechargeable batteries is influenced by the structural and phase changes of compo...
The performance of rechargeable batteries is influenced by the structural and phase changes of compo...
The design and performance of a novel in-situ electrochemical cell that greatly facilitates the neut...
The ability to directly track the charge carrier in a battery as it inserts/extracts from an electro...
International audienceIn situ neutron diffraction (ND) during battery operation is becoming a promis...
Neutron diffraction is a powerful technique to localize and quantify lithium in battery electrode ma...
The structural response to electrochemical cycling of the components within a commercial Li-ion batt...
The structural properties of two mechanically activated commercial LaNi5 type battery materials and ...
Electrochemical reactions at both positive and negative electrodes in a nickel metal hydride (Ni-MH)...
La2MgNi9-related alloys are superior metal hydride battery anodes as compared to the commercial AB5 ...
An electrochemical cell for in-situ neutron powder diffraction studies of electrode materials for li...
The intermetallic La<sub>2</sub>MgNi<sub>9</sub> has been investigated as negative electrode materia...
AbstractA novel neutron diffraction cell has been constructed to allow in-situ studies of the struct...
A novel neutron diffraction cell has been constructed to allow in-situ studies of the structural cha...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
The performance of rechargeable batteries is influenced by the structural and phase changes of compo...
The performance of rechargeable batteries is influenced by the structural and phase changes of compo...
The design and performance of a novel in-situ electrochemical cell that greatly facilitates the neut...
The ability to directly track the charge carrier in a battery as it inserts/extracts from an electro...
International audienceIn situ neutron diffraction (ND) during battery operation is becoming a promis...
Neutron diffraction is a powerful technique to localize and quantify lithium in battery electrode ma...
The structural response to electrochemical cycling of the components within a commercial Li-ion batt...