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High theoretical removabilities are indicated for most trace elements.
It is of high theoretical and practical value.
This could mainly be attributed to the high theoretical weight assigned to this parameter (5).
This phenomenon prevents Li-S batteries from achieving their high theoretical specific capacity.
In contrast, Co3O4 possesses high theoretical capacity, but undergoes huge volume change during cycling.
Bare Nb2C and Nb3C2 systems show an extremely high theoretical capacitance of Li atoms.
Lithium-sulfur (Li-S) battery has attracted remarkable attention owing to its high theoretical energy density.
Cr2O3 is of high theoretical capacity for lithium-ion (Li+) storage.
L-serine is a promising building block biochemical with a high theoretical production yield from glucose.
Silicon is a promising alternative anode material due to its high theoretical specific capacity.
SnO2 with high theoretical capacity assures the high capacity of the composite anode.
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