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50 wt% Pt/C

See all products by ReCatalyst
Price: On request

Description

ReCatalyst 50 wt% Pt/C is a fuel cell catalyst consisting of 50% platinum on carbon black. The material is supplied as a black powder and is intended for use as a cathode or anode material in PEM fuel cell and related electrochemical applications.

Chemical properties

  • Chemical formula: Pt/C
  • Empirical formula: Pt on carbon black
  • Metal(s): Pt
  • Theoretical metal content: 50 wt%

Physical properties

  • Physical state: Powder
  • Color: Black

Ordering notes

  • Minimum order quantity: 5 g per product
  • Maximum order quantity: 20 g per product; higher quantities by inquiry
  • Pricing: Inquiry-based
  • Lead time: To be advised / stock-related
  • Customisation: benchmark Generation 2 PEM fuel cell catalysts are listed; advanced materials and other applications are available by inquiry.

Specifications

Chemicals

CAS No

7440-06-4

Product class

Cathode or anode material

Catalyst Material

Pt/C

Empirical formula

Pt on carbon black

Metal(s)

Pt

Mass fraction (%)

50 wt%

Physical state

Powder

Color

Black

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60 wt% Pt/C

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40 wt% PtCo/C

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50 wt% PtCo/C

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ReCatalyst

References

Scientific publications where researchers have utilized this equipment.Are you an author? Contact us to add your research.

Performance and stability of PtCo alloy catalysts in high-temperature polymer electrolyte membrane fuel cells

V. Domin, M. Prokop, T. Bystron, M. Gatalo, L. Pavko, N. Hodnik, B. F. Gomes, C. M. S. Lobo, C. E. Hartwig, C. Roth, M. Paidar, K. Bouzek•Electrochimica Acta,536 (2025) 146707
https://doi.org/10.1016/j.electacta.2025.146707

Activity and degradation of Pt–Co and Pt–Ni alloy catalysts for application in high-temperature PEM fuel cells

J. D. Buriánek, M. Prokop, T. Bystron, M. Veselý, L. Koláčný, B. F. Gomes, C. M. S. Lobo, M. Gatalo, L. Pavko, N. Hodnik, M. Paidar, C. Roth, M. Gaberscek, K. Bouzek•EES Catalysis,2026, 4, 449–464
https://doi.org/10.1039/D5EY00279F

Origins of Nanoalloy Catalysts Degradation during Membrane Electrode Assembly Fabrication

M. Ronovský, O. Dunseath, T. Hrbek, P. Kúš, M. Gatalo, S. Polani, J. Kubát, D. Götz, H. Nedumkulam, A. Sartori, E. Petrucco, F. Ruiz-Zepeda, N. Hodnik, A. Martinez Bonastre, P. Strasser, J. Drnec•ACS Energy Letters,2024, 9, 10, 5251–5258
https://doi.org/10.1021/acsenergylett.4c02350

Adjusting the Operational Potential Window as a Tool for Prolonging the Durability of Carbon-Supported Pt-Alloy Nanoparticles as Oxygen Reduction Reaction Electrocatalysts

Tina Đukić, Léonard Jean Moriau, Iva Klofutar, Martin Šala, Luka Pavko, Francisco Javier González López, Francisco Ruiz-Zepeda, Andraž Pavlišič, Miha Hotko, Matija Gatalo, Nejc Hodnik•ACS Catalysis,2024, 14, 6, 4303–4317
https://doi.org/10.1021/acscatal.3c06251

Alternative and facile production pathway towards obtaining high surface area PtCo/C intermetallic catalysts for improved PEM fuel cell performance

P. A. Heizmann, H. Nguyen, M. von Holst, A. Fischbach, M. Kostelec, F. J. Gonzalez Lopez, M. Bele, L. Pavko, T. Đukić, M. Šala, F. Ruiz-Zepeda, C. Klose, M. Gatalo, N. Hodnik, S. Vierrath, M. Breitwieser•RSC Advances,2023, 13, 4601–4611
https://doi.org/10.1039/D2RA07780A

Importance of Chemical Activation and the Effect of Low Operation Voltage on the Performance of Pt-Alloy Fuel Cell Electrocatalysts

M. Gatalo, A. Martinez Bonastre, L. J. Moriau, H. Burdett, F. Ruiz-Zepeda, E. Hughes, A. Hodgkinson, M. Šala, L. Pavko, M. Bele, N. Hodnik, J. Sharman, M. Gaberšček•ACS Applied Energy Materials,2022, 5, 7, 8862–8877
https://doi.org/10.1021/acsaem.2c01359

Understanding the Crucial Significance of the Temperature and Potential Window on the Stability of Carbon Supported Pt-Alloy Nanoparticles as Oxygen Reduction Reaction Electrocatalysts

Tina Đukić, Leonard Jean Moriau, Luka Pavko, Mitja Kostelec, Martin Prokop, Francisco Ruiz-Zepeda, Martin Šala, Goran Dražić, Matija Gatalo, Nejc Hodnik•ACS Catalysis,2022, 12, 1, 101–115
https://doi.org/10.1021/acscatal.1c04205

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