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Accelerate® Platinum Cobalt Nickel on High Surface Area Carbon

  • Product Code:19301200
  • Description:45% Pt, 2.5% Co, 2.5% Ni on High Surface Area Carbon
  • Brand:Accelerate®
  • Lead time:2-3weeks
  • Views:8
  • Telephone:+86 153-5789-9751; +86 156-0553-2352
  • Keywords:Accelerate® Platinum Cobalt Nickel on High Surface Area Carbon,SCI Materials Hub
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Detailed Product Description:

Accelerate® Platinum Cobalt Nickel on High Surface Area Carbon is an advanced electrocatalyst designed for optimal performance in various electrochemical applications, particularly in fuel cells and water electrolysis. This catalyst features a unique composite structure where platinum (Pt), cobalt (Co), and nickel (Ni) are supported on high surface area carbon. The high surface area of the carbon support significantly enhances the overall catalytic activity and conductivity, facilitating efficient electrochemical reactions.

Features:

  • High Surface Area Carbon Support: The use of high surface area carbon maximizes the available active sites for electrochemical reactions, significantly improving overall catalytic efficiency.
  • Triple Metal Composition: The combination of platinum, cobalt, and nickel provides synergistic effects that enhance the catalytic activity for critical electrochemical reactions, including hydrogen oxidation and oxygen reduction.
  • Excellent Stability: This catalyst demonstrates robust stability under a wide range of operational conditions, ensuring long-term performance in demanding environments.
  • Optimized Metal Dispersion: Platinum, cobalt, and nickel are uniformly distributed on the carbon support, maximizing their exposure to reactants and improving reaction kinetics.

Advantages:

  • Enhanced Catalytic Performance: The synergistic effect of platinum, cobalt, and nickel maximizes the efficiency of electrochemical reactions, leading to improved overall system performance in fuel cell and electrolyzer applications.
  • Cost-Effective Solution: Utilizing cobalt and nickel alongside platinum allows for a reduction in the overall amount of precious metals needed, making it a more economical option without compromising performance.
  • Environmentally Sustainable: Supports the development of clean energy technologies, contributing to reduced carbon emissions and promoting sustainable energy solutions.

Applications:

  • Fuel Cells: Ideal for use in hydrogen fuel cells, providing efficient electrochemical reactions for energy conversion.
  • Water Electrolysis: Employed in water electrolysis systems to facilitate effective hydrogen production.
  • Energy Storage Systems: Applied in various energy storage applications to enhance efficiency and performance.
  • Electrochemical Sensors: Utilized in sensors for improved sensitivity and response times in detecting various analytes.


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