Exact(6)
The increase of charge density activates the inclusion of Cr in the deposit.
Sensitive quantitative detection of DIF was carried out by monitoring the increase of charge transfer resistance (Rct) by increasing the DIF concentration.
Electrochemical impedance spectroscopy (EIS) measurements reveal that both fluorine substitution and FePO4 coating could suppress the increase of charge transfer resistance with cycling.
The electrochemical impedance spectroscopy studies showed the increase of charge resistance after addition of each of these ligands, indicating their interaction with GDNA.
The electrical and dielectric parameters are very close at and around room temperature then the increase of charge carriers' mobility at higher temperatures explains the deviation from stability in case of the prepared grease.
Further study revealed that this phenomenon was caused by the increase of charge trapping (oxygen site) on MoS2 interface as well [82].
Similar(54)
The electrochemical impedance spectroscopy (EIS) results indicated that the FePO4 coating layer significantly suppressed the increase of charge-transfer resistance (Rct).
The electrochemical impedance spectroscopy results demonstrate that the Al2O3 coating can slow the increase of charge-transfer resistance during cycling, which is in accord with the excellent electrochemical cycling performance of Al2O3-coated LiCoO2.
With the increase of the charge a trend of increasing damages in the outer and intermediate plates was observed, but the increase was small for the inner plate.
The improvement of discharge capacity at elevated temperatures was contributed to the increase of the charge acceptance of yttrium-doped nickel hydroxide.
Additionally, the heat transfer rate first increases then decreases with the increase of refrigerant charge, and first increases linearly then increases relatively slowly with the increase of temperature difference.
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