Rotating disk electrode cell
A rotating disk electrode cell has a housing with a reservoir configured to receive a sample for an electrochemical experiment. A shaft is positioned in the housing such that the shaft is free to rotate around the longitudinal axis of the shaft and such that both ends of the shaft are located inside of the housing.
1. A rotating disk electrode cell, comprising:
a housing that includes a reservoir for receiving a sample for an electrochemical experiment,
a shaft positioned within the housing so as to rotate around a longitudinal axis of the shaft, the shaft having a first end and a second end,
the first end of the shaft and the second end of the shaft being positioned inside of the housing and the shaft does not extend outside the housing,
a working electrode fixed to the first end of the shaft, and
a reference electrode located within the housing to contact the sample and offset from the longitudinal axis of the shaft,
wherein the shaft is magnetically coupled to a drive shaft across the housing.
2. The cell of claim 1 , further comprising:
a shroud positioned over a lateral side and an upper surface of the working electrode and over a portion of the shaft, the shroud forming a functional surface extending beyond the lateral side of the working electrode, the diameter of the functional surface being configured to provide a predetermined diffusion layer over the working electrode during operation of the rotating disk electrode cell.
3. The cell of claim 2 , wherein the shroud is electrically insulating.
4. The cell of claim 2 , wherein the shroud includes material selected from the group consisting of Teflon, polyetheretherketone (PEEK), and polyetheretherketone (Kel-F).
5. The cell of claim 1 , wherein the second end of the shaft is located between the housing and first end of the shaft.
6. The cell of claim 1 , wherein one or more brushes are in electrical communication with the shaft and are positioned inside of the housing.
7. The cell of claim 1 , further comprising:
an electrically-insulating shroud entirely encasing a lateral side and an upper surface of the working electrode and a portion of the shaft, the shroud extending beyond the lateral side of the working electrode.
8. A rotating disk electrode cell, comprising:
a reservoir cover that holds a shaft such that the shaft can rotate around a longitudinal axis of the shaft without the shaft extending through the reservoir cover;
a housing, detachably attached to the reservoir cover, that includes a reservoir for receiving a sample for an electrochemical experiment,
the shaft being positioned within the housing so as to rotate around the longitudinal axis of the shaft, the shaft having a first end and a second end,
the first end of the shaft and the second end of the shaft being positioned inside of the housing so that the shaft does not extend outside the housing;
a working electrode fixed to the first end of the shaft, and
a reference electrode located within the housing to contact the sample and offset from the longitudinal axis of the shaft.
9. The cell of claim 8 , wherein the second end of the shaft is located between the cover and the first end of the shaft.
10. The cell of claim 8 , wherein the cover extends over the second end of the shaft.
11. The cell of claim 8 , wherein the shaft is magnetically coupled with a drive shaft across the cover.
12. The cell of claim 8 , wherein one or more brushes are in electrical communication with the shaft and are positioned inside of the cover.
13. The cell of claim 8 , further comprising:
an electrically-insulating shroud positioned over a lateral side and an upper surface of the working electrode and over a portion of the shaft, wherein the shroud includes material selected from the group consisting of Teflon, polyetheretherketone (PEEK), and polyetheretherketone (Kel-F).
14. A rotating disk electrode cell, comprising:
a housing that includes a reservoir for receiving a sample for an electrochemical experiment,
a shaft positioned within the housing so as to rotate around a longitudinal axis of the shaft, wherein the shaft does not extend outside the housing and wherein the shaft is magnetically coupled to a drive shaft across the housing,
a working electrode fixed to an end of the shaft,
a reference electrode located within the housing to contact the sample and offset from the longitudinal axis of the shaft, and
one or more brushes that make electrical contact with the shaft and are positioned inside of the housing.
15. The cell of claim 14 , wherein the one or more brushes are each a carbon brush.
16. The cell of claim 14 , wherein at least one of the one or more brushes is in electrical communication with the working electrode.
17. The cell of claim 5 , wherein the housing extends over the second end of the shaft.
18. A rotating disk electrode cell, comprising:
a reservoir cover that holds a shaft such that the shaft can rotate around a longitudinal axis of the shaft, wherein the shaft does not extend through the reservoir cover and wherein the shaft is magnetically coupled to a drive shaft across the reservoir cover;
a working electrode fixed to an end of the shaft;
a reference electrode mounted on reservoir cover and offset from the longitudinal axis of the shaft; and
one or more brushes that make electrical contact with the shaft and are positioned inside of the reservoir cover.
19. The cell of claim 18 , wherein the one or more brushes are each a carbon brush.
20. The cell of claim 18 , wherein
at least one of the one or more brushes is in electrical communication with the working electrode.