A fundamental electrochemical model is developed, describing the capacity fade of C6/LiFePO4 batteries as a function of calendar time and cycling conditions. At moderate temperatures the capacity losses are mainly attributed to Li immobilization in Solid-Electrolyte-Interface (SEI) layers at the anode surface. The SEI formation model presumes the availability of an outer and inner SEI layers. Electron tunneling through the inner SEI layer is regarded as the rate-determining step. The model also includes high temperature degradation. At elevated temperatures, iron dissolution from the positive electrode and the subsequent metal sedimentation on the negative electrode influence the capacity loss. The SEI formation on the metal-covered graphit...
A new model, describing the capacity loss of C6/LiFePO4 batteries under open-circuit storage conditi...
A new model, describing the capacity loss of C6/LiFePO4 batteries under open-circuit storage conditi...
A new model, describing the capacity loss of C 6 /LiFePO 4 batteries under open-circuit storage cond...
A fundamental electrochemical model is developed, describing the capacity fade of C6/LiFePO4 batteri...
A fundamental electrochemical model is developed, describing the capacity fade of C6/LiFePO4 batteri...
A fundamental electrochemical model is developed, describing the capacity fade of C6/LiFePO4 batteri...
An advanced model is proposed, describing the capacity losses of C6/LiFePO4 batteries under storage ...
An advanced model is proposed, describing the capacity losses of C6/LiFePO4 batteries under storage ...
\u3cp\u3eA fundamental electrochemical model is developed, describing the capacity fade of C\u3csub\...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
Electromotive force (EMF) voltage curves are regularly determined to facilitate in-depth understandi...
Electromotive force (EMF) voltage curves are regularly determined to facilitate in-depth understandi...
A new model, describing the capacity loss of C6/LiFePO4 batteries under open-circuit storage conditi...
A new model, describing the capacity loss of C6/LiFePO4 batteries under open-circuit storage conditi...
A new model, describing the capacity loss of C 6 /LiFePO 4 batteries under open-circuit storage cond...
A fundamental electrochemical model is developed, describing the capacity fade of C6/LiFePO4 batteri...
A fundamental electrochemical model is developed, describing the capacity fade of C6/LiFePO4 batteri...
A fundamental electrochemical model is developed, describing the capacity fade of C6/LiFePO4 batteri...
An advanced model is proposed, describing the capacity losses of C6/LiFePO4 batteries under storage ...
An advanced model is proposed, describing the capacity losses of C6/LiFePO4 batteries under storage ...
\u3cp\u3eA fundamental electrochemical model is developed, describing the capacity fade of C\u3csub\...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
Electromotive force (EMF) voltage curves are regularly determined to facilitate in-depth understandi...
Electromotive force (EMF) voltage curves are regularly determined to facilitate in-depth understandi...
A new model, describing the capacity loss of C6/LiFePO4 batteries under open-circuit storage conditi...
A new model, describing the capacity loss of C6/LiFePO4 batteries under open-circuit storage conditi...
A new model, describing the capacity loss of C 6 /LiFePO 4 batteries under open-circuit storage cond...