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Precision RDE/RRDE Shaft for E5, E5TQ, E6, E7, and E8 Series Tips

Part Number
AFE6MB

This 15.0 mm OD PEEK shrouded precision shaft is compatible with the MSR evo Electrode Rotator, and accepts E5, E6, E7, and E8 Series rotating disk (RDE) and rotating ring-disk (RRDE) electrode tips (fixed-disk and ChangeDisk types). The shroud above the retaining ring is precisely machined to fit the Gas-Purged Bearing Assembly. The retaining ring keeps the bearing in place, if used, for easy access into the electrochemical cell.

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This 15.0 mm OD PEEK shrouded precision shaft is compatible with the MSR evo Electrode Rotator, and accepts E5, E6, E7, and E8 Series rotating disk (RDE) and rotating ring-disk (RRDE) electrode tips (fixed-disk and ChangeDisk types). The shroud above the retaining ring is precisely machined to fit the Gas-Purged Bearing Assembly. The retaining ring keeps the bearing in place, if used, for easy access into the electrochemical cell.

Important
Specifications
References
Shafts sold separately.

Given the wide range of electrodes we offer, where each series requires one of several rotating shafts, shafts must be purchased separately for the MSR and MSR evo rotators. Consult the RDE, RRDE, and/or RCE specifications to learn which shaft is compatible.

Electrodes sold separately.

Given the wide range of electrodes we offer, rotators do not include electrodes (RDE, RRDE, RCE) and must be purchased separately. This way, you can select the perfect electrode for your applications.

Electrode Rotator
Applications
Electrode Shafts
Shaft length (overall)
171 mm (6.7 in)
Shaft shroud diameter
Shaft shroud length
83 mm, 101 mm
Shaft shroud material
When possible, we add published articles, theses and dissertations, and books to our references library. When we know this product has been used, we will include it in this list below. If you have a reference where our product was used and it's not in this list, please contact us with the details and we will add it.
  1. Jiang et al. Polypyrrole derived carbon nanotube aerogel based single-site Fe-N-C catalyst with superior ORR activity and durability. Fuel, 2024, 366, 131404.
  2. Xue et al. Mo-Based MXene-Supported Pt Nanoparticles for Highly Durable Oxygen Reduction in Acidic Electrolytes. ACS Applied Nano Materials, 2024, 7, 6305-6314.
  3. Askari et al. Selective Reduction of Aqueous Nitrate to Ammonium with an Electropolymerized Chromium Molecular Catalyst. Journal of the American Chemical Society, 2024, 146, 7439-7455.
  4. Goyal et al. Competition between CO2 Reduction and Hydrogen Evolution on a Gold Electrode under Well-Defined Mass Transport Conditions. Journal of the American Chemical Society, 2020, 142, 4154-4161.
  5. Strobl et al. Solution phase superoxide as an intermediate in the oxygen reduction reaction on glassy carbon in alkaline media. Electrochimica Acta, 2020, 335, 135432.
  6. Yin et al. 2,2′-Dipyridylamine as Heterogeneous Organic Molecular Electrocatalyst for Two-Electron Oxygen Reduction Reaction in Acid Media. ACS Applied Energy Materials, 2019, 2, 7272-7278.
  7. Vos and Koper Examination and prevention of ring collection failure during gas-evolving reactions on a rotating ring-disk electrode. Journal of Electroanalytical Chemistry, 2019, 850, 113363.