The phase changes that occur during lithium extraction from LiCoPO4 in lithium half-cells were studied using synchrotron X-ray diffraction. The existence of two two-phase regions with an intermediate phase present was observed. Significant variations in the composition of the phases of nominal stoichiometry LiCoPO4, Li2/3CoPO4 and CoPO4 resulted in unit cell volume variations. On current pulsing, lattice parameter shifts and phase recovery were directly observed
LiCoPO4 (LCP) is a promising high voltage cathode for next-generation high energy Li-ion batteries. ...
LiFePO<sub>4</sub> is a well-known electrode material that is capable of high-rate charging and disc...
Phase transitions in Li-ion electrode materials during (dis)charge are decisive for battery performa...
lithium-ion batteries. Previously, in-situ synchrotron diffraction was applied to study the mechanis...
The electrochemical performance of LiCoPO4-based electrodes was studied in dependence on synthetic c...
The phase changes that occur during discharge of an electrode comprised of LiFePO<sub>4</sub>, carbo...
LiCoPO4 (LCP) is a promising high voltage cathode for next-generation high energy Li-ion batteries. ...
Probing the structural changes that electrode materials undergo during electrochemical cycling while...
We have performed operando synchrotron high-energy X-ray diffraction (XRD) to obtain nonintrusive, r...
International audienceProbing the structural changes that electrode materials undergo during electro...
Chemical energy storage in Li-ion batteries is a key technology for the future renewable society. Th...
Data files in support of: Palmer, Michael et al (2016) In situ Phase Behaviour of a High Capacity L...
LiCoPO4(LCP) is a promising high voltage cathode for next-generation high energy Li-ion batteries. H...
The cobalt-based fluorophosphate Li<sub>2</sub>CoPO<sub>4</sub>F positive electrode has the potentia...
A novel 1 V battery composed of Sn−LiCoPO4 using aqueous lithium hydroxide electrolyte is described....
LiCoPO4 (LCP) is a promising high voltage cathode for next-generation high energy Li-ion batteries. ...
LiFePO<sub>4</sub> is a well-known electrode material that is capable of high-rate charging and disc...
Phase transitions in Li-ion electrode materials during (dis)charge are decisive for battery performa...
lithium-ion batteries. Previously, in-situ synchrotron diffraction was applied to study the mechanis...
The electrochemical performance of LiCoPO4-based electrodes was studied in dependence on synthetic c...
The phase changes that occur during discharge of an electrode comprised of LiFePO<sub>4</sub>, carbo...
LiCoPO4 (LCP) is a promising high voltage cathode for next-generation high energy Li-ion batteries. ...
Probing the structural changes that electrode materials undergo during electrochemical cycling while...
We have performed operando synchrotron high-energy X-ray diffraction (XRD) to obtain nonintrusive, r...
International audienceProbing the structural changes that electrode materials undergo during electro...
Chemical energy storage in Li-ion batteries is a key technology for the future renewable society. Th...
Data files in support of: Palmer, Michael et al (2016) In situ Phase Behaviour of a High Capacity L...
LiCoPO4(LCP) is a promising high voltage cathode for next-generation high energy Li-ion batteries. H...
The cobalt-based fluorophosphate Li<sub>2</sub>CoPO<sub>4</sub>F positive electrode has the potentia...
A novel 1 V battery composed of Sn−LiCoPO4 using aqueous lithium hydroxide electrolyte is described....
LiCoPO4 (LCP) is a promising high voltage cathode for next-generation high energy Li-ion batteries. ...
LiFePO<sub>4</sub> is a well-known electrode material that is capable of high-rate charging and disc...
Phase transitions in Li-ion electrode materials during (dis)charge are decisive for battery performa...