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Parameters for Chronocoulometry
In Chronocoulometry (CC), potential is stepped from Init E toward Fianl E. The potential
may step back. The following diagram shows the potential waveform applied as the function of
time.  The charge passing through the working electrode is recorded as the function of time.
The following are the experimental parameters, their range and descriptions:
Parameters Range Description
Init E (V) -10   -   +10 Initial potential
Final E (V) -10   -   +10 Final potential
Number of Steps 1  -  320 Number of potential steps
Pulse Width (sec) 1e-4  -  1000 Potential pulse width
Sample Interval (s) 1e-6  -  10 Sampling Interval
Quiet Time (sec) 0  -  100000 Quiescent time before potential step
Sensitivity (C or
A/V)
1e-12  -  0.1
or 1e-9C/V -
1e-6 C/V
Sensitivity scale
Notes:
1. Init E and Final E should be at least 0.01 V apart.
2. The maximum potential step range is 13.1 V.
3. A true integrator (charge-to-voltage converter) can be chosen. In this case, the sensitivity
is 1e-9C/V to 1e-6C/V. If the charge exceeds the 8e-6 coulomb,  the capacitor of the
Potential(V)
Init E
Time (s)
Final E
Step 1 Step 2 Step 3
Init E
Final E
0
Pulse Width Pulse WidthChapter 4.  Setup Menu
________________________________________________________________________
4-13
integrator will be discharged and the new charge will be added to the previous value. This
allows higher charge to be measured with the integrator. There might be discontinuity in
charge-time curve due to the capacitor discharge. The discontinuity should be negligible.
However, if it is significant to the measurement, you may choose to use the current-to-
voltage converter and integrate the current measured by software.
4. Current-to-voltage converter is not ideal for chronocoulometry, particularly if the early
transient data is important, such as double layer capacitance, or surface reactions. Charge-to-
voltage converter (true integrator) is a better choice.
5. If current-to-voltage converter is selected due to high total charge, shorter sample interval
will increase data density, but will reduce the signal-to-noise ratio. If earlier transient data is
important, shorter sample interval is recommended. If the later part of data is of interest,
longer sample interval is recommended. However, minimum 1000 points per step are
required, unless sampling rate does not allow it.
6. If the sample interval is less than 0.002s, the data will not be transferred on the real-time
base. Instead the data will be transferred after the experiment is completed. Cell is turned off
during the data transfer unless the Cell On between Run option is selected. From start of
experiment and data transfer there is a delay. The total number of data points will be limited
to 64K due to internal memory size limitation. Sample interval might be automatically
altered to adjust the data points in the reasonable range.
7. If the sample interval is longer than 0.002s, data will be transferred during experiment.
Maximum 64K total data points are allowed for each step. Sample interval might be
automatically altered to adjust the data points in the reasonable range.
8. If the current-to-voltage converter is used, during the run, an ¡°Overflow¡± warning might
appear. This is due to the current transient immediately after the potential step. If the
intercept (that gives information of double layer capacitance and adsorption) of Anson plot
(Q-t
1/2
plot) is not your primary interest, you may not worry about it. However, if the data
distortion can be seen visually, you have to lower the sensitivity scale.
Sometimes, you may use i/E converter filter to slow the system down, but make sure that
the time constant of the filter (1/cutoff freq) is much shorter than the pulse width.
In order to reduce noise and enhance the accuracy of the measurement, it is
recommended to use the highest sensitivity scale possible.


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2Â¥2012-02-19 10:44:34
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caowei1122

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ÒýÓûØÌû:
2Â¥: Originally posted by abc5710110 at 2012-02-19 10:44:34
ÎÒÃǵŤ×÷Õ¾CHI660DµÄ˵Ã÷Êé½éÉÜ£ºÏ£ÍûÄܶÔÄãÓаïÖú
Parameters for Chronocoulometry
In Chronocoulometry (CC), potential is stepped from Init E toward Fianl E. The potential
may step back. The follow ...

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