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I would like to determine a charging protocol with as little degradation as possible and a long life.
To that end, I would like to proceed with optimization, and I would like to ask for advice on which is the most represented by the criteria for measuring degradation.
I would appreciate it if you could answer.
'Throughput capacity [A.h]',
'Throughput energy [W.h]',
'Loss of lithium inventory [%]',
'Loss of lithium inventory, including electrolyte [%]',
'Total lithium [mol]',
'Total lithium in electrolyte [mol]',
'Total lithium in particles [mol]',
'Total lithium lost [mol]',
'Total lithium lost from particles [mol]',
'Total lithium lost from electrolyte [mol]',
'Loss of lithium to SEI [mol]',
'Loss of capacity to SEI [A.h]',
'Total lithium lost to side reactions [mol]',
'Total capacity lost to side reactions [A.h]',
'Local ECM resistance [Ohm]',
'Negative electrode capacity [A.h]',
'Loss of active material in negative electrode [%]',
'Total lithium in negative electrode [mol]',
'Loss of lithium to lithium plating [mol]',
'Loss of capacity to lithium plating [A.h]',
'Loss of lithium to SEI on cracks [mol]',
'Loss of capacity to SEI on cracks [A.h]',
'Positive electrode capacity [A.h]',
'Loss of active material in positive electrode [%]',
'Total lithium in positive electrode [mol]'
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I would like to determine a charging protocol with as little degradation as possible and a long life.
To that end, I would like to proceed with optimization, and I would like to ask for advice on which is the most represented by the criteria for measuring degradation.
I would appreciate it if you could answer.
'Throughput capacity [A.h]',
'Throughput energy [W.h]',
'Loss of lithium inventory [%]',
'Loss of lithium inventory, including electrolyte [%]',
'Total lithium [mol]',
'Total lithium in electrolyte [mol]',
'Total lithium in particles [mol]',
'Total lithium lost [mol]',
'Total lithium lost from particles [mol]',
'Total lithium lost from electrolyte [mol]',
'Loss of lithium to SEI [mol]',
'Loss of capacity to SEI [A.h]',
'Total lithium lost to side reactions [mol]',
'Total capacity lost to side reactions [A.h]',
'Local ECM resistance [Ohm]',
'Negative electrode capacity [A.h]',
'Loss of active material in negative electrode [%]',
'Total lithium in negative electrode [mol]',
'Loss of lithium to lithium plating [mol]',
'Loss of capacity to lithium plating [A.h]',
'Loss of lithium to SEI on cracks [mol]',
'Loss of capacity to SEI on cracks [A.h]',
'Positive electrode capacity [A.h]',
'Loss of active material in positive electrode [%]',
'Total lithium in positive electrode [mol]'
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