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Electrochemical cell cover
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Description
The cell is designed to be used with a 10 mL beaker. For cell V3, the useful cell volume ranges from 5 to 8 mL. For cell V4 the useful volume is 2.7 ml to 5 ml.
The cell was developed for a 3-electrode system, with 3 openings for the electrodes and 1 opening for liquid injection with a 100 microL micropipette.
The opening for the working electrode is square in shape, with dimensions of length and width of 14.6 mm and 3.6 mm, respectively. For the reference and auxiliary electrodes, the openings are cylinders with diameters of 6.8 mm and 7.0 mm, respectively.
The tampa_celula_V5 file was developed for a 3-electrode system, with openings for the reference and auxiliary electrodes in a cylindrical shape with a diameter of 8.0 mm. The working electrode is made of nickel foam and the opening is for an alligator clip. That cell cover is designed to be used with a 25 mL beaker.
To print
A print speed for walls and fill of 20mm s-1 and 40mm s-1 respectively.
25% fill density,
The cell is designed to be used with a 10 mL beaker. For cell V3, the useful cell volume ranges from 5 to 8 mL. For cell V4 the useful volume is 2.7 ml to 5 ml.
The cell was developed for a 3-electrode system, with 3 openings for the electrodes and 1 opening for liquid injection with a 100 microL micropipette.
The opening for the working electrode is square in shape, with dimensions of length and width of 14.6 mm and 3.6 mm, respectively. For the reference and auxiliary electrodes, the openings are cylinders with diameters of 6.8 mm and 7.0 mm, respectively.
The tampa_celula_V5 file was developed for a 3-electrode system, with openings for the reference and auxiliary electrodes in a cylindrical shape with a diameter of 8.0 mm. The working electrode is made of nickel foam and the opening is for an alligator clip. That cell cover is designed to be used with a 25 mL beaker.
To print
A print speed for walls and fill of 20mm s-1 and 40mm s-1 respectively.
25% fill density,
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