• Electrode Hydrogen Fuel Cell Catalyst Chloroplatinic Acid Material 60 Wt.%
Electrode Hydrogen Fuel Cell Catalyst Chloroplatinic Acid Material 60 Wt.%

Electrode Hydrogen Fuel Cell Catalyst Chloroplatinic Acid Material 60 Wt.%

Product Details:

Place of Origin: Created in China
Brand Name: Sino-Science Hydrogen
Certification: IOS9001, IOS14001 quality management system certification
Model Number: Pt/Co

Payment & Shipping Terms:

Minimum Order Quantity: 5g
Price: Negotiable
Packaging Details: Professional packaging
Delivery Time: Within one month after order
Payment Terms: T/T, MoneyGram
Supply Ability: 50KG/months
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Detail Information

ProductSpecifications: PtCo/C Material: Chloroplatinic Acid
Purpose: Power Generation Morphology: Powder
Color: Black Metal Loading (wt.%): 40~60
High Light:

Chloroplatinic fuel cell electrode materials

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Chloroplatinic Hydrogen Fuel Cell Catalyst

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60 Wt.% Hydrogen Fuel Cell Catalyst

Product Description

 

Sino-Science Hydrogen Fuel Cell Core Material High-Performance Hydrogen Fuel Cell Catalyst Pt/Co

 

 

Specification

 

Parameter Technical index
ProductSpecifications PtCo/C
Material Chloroplatinic acid
Purpose Power Generation
Morphology Powder
Color Black
Metal loading (wt.%) 40~60
Cas 7440-06-4

 

 

Description

 

Zhongke of Hydrogen Power (Guangzhou)New Energy Co.Ltd. aims to provide commercial Pt/C and Pt-alloyed/C PEMFC catalysts. Tailor-made catalysts with different metal loadings and carbon supports are also available upon requirements.Pt loadings vary from20 to 60 wt.% for the highly-dispersed 1-3 nm catalysts. Typical metal loadings of the alloyed PtNi/C and PtCo/C catalysts are 45%with an electrochemical surface area ~ 50 m2/g.Highly dispersed Pt particles (1-4nm)supported on carbon black with ouradvanced nano-technology.

Platinum on carbon is used for catalytic hydrogenations in organic synthesis. Examples include carbonyl reduction, nitro compound reduction, secondary amine production via nitrile reduction, and the production of saturated heterocycles from their respective aromatic compound precursors.

 

features

 

1.Excellent perfomance for oxygen reductionas cathode catalyst with optimizedpreparation technique and carbon support.
2.Highly dispersed Pt particles (4-6nm) supported on carbon black withour advanced nano-technology.
3.Excellent performance for CO tolerance as anode catalyst with optimized preparationtechnique and carbon support.
4.High activity even at a high space velocity thanks to highly dispersed catalytic precious metal.Activity is maintained at a wide range of temperatures from low to high.

 

 

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