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Further cyclic study found that the composite with C3N4 additive exhibits improved cyclic dehydrogenation property although it also shows capacity loss upon cycling, particularly in the second cycle.
Though the initial coulombic efficiency of Cu/CF-800 is only 64.5%%, it increases dramatically upon cycling, reaching nearly 100%% during the subsequent cycles.
Although the cell exhibited high irreversible capacity during the first four cycles, the columbic efficiency has been improved upon cycling.
In contrast, a very slight change in the resistance of the Zn Sn O-500 electrode is observed after 50 cycles, confirming the excellent structural stability of the composite upon cycling.
Only the oxidation (Li extraction) peaks at 1.71 and 1.96 V remain stable upon cycling, implying the structure change of the LiNb3O8 sample in subsequent cycles is reversible.
The capacity of the composite with atomic ratios of Co: Sn of 1 4 and 1 2 gradually drop upon cycling and stay at 289.2 and 352.2 mAh g−1 after 100 cycles.
As a family, they finally stumbled upon cycling.
The capacities of SnO2 nanoparticles decrease quickly upon cycling.
These results were reproducible upon cycling.
Hence, the impedance of both electrodes increases considerably upon cycling.
For comparison a Ru B catalyst was tested upon cycling.
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