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This circuit employed allows calculating of both solution resistance (Rs) and charge transfer resistance (Rt).
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Note that since we mainly focus on the verification of high spatial diversity in this work, the circuits employed in the demonstration were not fully optimized.
Moreover, the circuit employs only two grounded capacitors that is very suitable for fully integrated circuit (IC) design.
Input-stage of the circuit employs low-noise differential dual JFET, which ensures high input impedance and low noise.
It is shown that the better performance of the latter pulser in terms of rise time is due to a different configuration circuit employed in its construction.
Changes in the capacity appear to be artefacts arising from the inadequate description of the electrical behaviour of the interface in terms of the Randles-type equivalent circuit employed in the analysis of experimental impedance data.
d Simplified equivalent circuit employed to fit the Nyquist plots.
Inset: the equivalent circuit employed to fit the Nyquist plots.
The circuit employed allows the identification of both solution resistance (R s) and charge transfer resistance (R t).
d Nyquist plots of PEDOT PSS/SiNWs and alkali treated-PEDOT PSS/SiNWs solar cells atreated-PEDOT PSS/SiNWsunder dark conditionsolare inset is the equivalent cellsit employed to fit the IS datapplied
Fig. 8 (Color online) a Nyquist plots of PSCs modified by CH3NH3I solution with different concentrations measured at the bias voltage of −0.8 V (close to V oc) in the dark, b Equivalent circuit employed to fit the Nyquist plots.
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