1. Youveim® E129 FeCoNi - Titanium Mesh Electrode
Product Description
The Youveim® E129 FeCoNi - Titanium Mesh Electrode features a high-performance catalytic material composed of a ternary alloy of iron (Fe), cobalt (Co), and nickel (Ni) deposited on a robust titanium mesh substrate. This electrode is engineered for superior electrocatalytic activity, making it suitable for various electrochemical reactions, particularly the oxygen evolution reaction (OER) and hydrogen evolution reaction (HER). The titanium mesh provides excellent mechanical strength and corrosion resistance, ensuring long-lasting performance in demanding environments.
Features
Ternary Alloy Catalyst: Combines iron, cobalt, and nickel for enhanced catalytic performance.
Titanium Mesh Substrate: Offers high durability and resistance to corrosion.
Lightweight Design: Ensures ease of handling and installation in various applications.
Advantages
High Catalytic Activity: The unique alloy composition enables effective OER and HER, promoting efficient energy conversion.
Corrosion Resistance: Titanium substrate withstands harsh environments, extending the operational life of the electrode.
Cost-Effective Solution: Reduces reliance on precious metals while maintaining effective performance.
Applications
Water Splitting: Ideal for hydrogen production through electrolysis.
Energy Storage Systems: Suitable for applications in batteries and supercapacitors.
Fuel Cells: Effective for systems requiring efficient OER and HER for power generation.
2. Youveim® E129T FeCoNi - Titanium Mesh Electrode with Hydrophobic Interface
Product Description
The Youveim® E129T FeCoNi - Titanium Mesh Electrode with Hydrophobic Interface incorporates a specialized hydrophobic surface treatment on the same FeCoNi alloy and titanium mesh substrate as the E129 model. This hydrophobic interface significantly enhances gas-liquid separation during electrochemical reactions, reducing the risk of flooding and improving overall electrode efficiency.
Features
Hydrophobic Surface Treatment: Prevents liquid accumulation and facilitates efficient gas release.
FeCoNi Alloy Catalyst: Maintains high performance for OER and HER.
Titanium Mesh Substrate: Provides strength and corrosion resistance.
Advantages
Enhanced Reaction Efficiency: The hydrophobic interface promotes optimal gas diffusion, reducing potential flooding issues.
Stable Performance: Retains effective functionality over extended periods, even in high-volume applications.
Versatile Application: Effective in various electrolytic and energy conversion systems.
Applications
Electrolysis Systems: Ideal for large-scale hydrogen production with efficient gas management.
Fuel Cells: Suitable for enhancing performance by improving gas diffusion characteristics.
Electrochemical Reactors: Useful in any system requiring optimal gas-liquid interaction.
3. Youveim® E129PT FeCoNi - Platinized Titanium Mesh Electrode
Product Description
The Youveim® E129PT FeCoNi - Platinized Titanium Mesh Electrode features a platinized layer over the titanium mesh substrate with the FeCoNi alloy. This design significantly enhances the catalytic performance of the electrode for both the OER and HER by reducing overpotentials and increasing reaction rates. The combination of platinum and the FeCoNi alloy provides an exceptional balance between performance and durability.
Features
Platinum Coating: Enhances electrocatalytic activity and reduces reaction overpotentials.
FeCoNi Alloy Catalyst: Supports high efficiency in electrochemical reactions.
Titanium Mesh Base: Ensures mechanical integrity and corrosion resistance.
Advantages
Superior Catalytic Performance: The platinum coating leads to faster and more efficient reactions compared to non-platinized electrodes.
Long-Term Stability: High durability in aggressive environments due to the robust substrate and protective platinum layer.
Versatile Use: Applicable in a wide range of electrochemical applications requiring high performance.
Applications
Water Electrolysis: Optimal for hydrogen and oxygen production with high efficiency.
Fuel Cells: Enhances the performance of hydrogen fuel cells by facilitating rapid reactions.
Industrial Electrochemical Processes: Effective for demanding applications in various electrochemical technologies.
4. Youveim® E129G FeCoNi - Gold-Plated Titanium Mesh Electrode
Product Description
The Youveim® E129G FeCoNi - Gold-Plated Titanium Mesh Electrode combines the benefits of a gold-plated surface with the robust FeCoNi alloy and titanium mesh design. The gold plating enhances electrical conductivity, corrosion resistance, and overall stability of the electrode in various electrolytic environments. This electrode is designed for optimal performance in electrochemical reactions, especially in systems where high durability and efficiency are essential.
Features
Gold Plating: Provides excellent corrosion resistance and high electrical conductivity.
FeCoNi Alloy Catalyst: Ensures high efficiency for OER and HER.
Titanium Mesh Substrate: Offers mechanical strength and durability.
Advantages
Enhanced Conductivity: Gold plating significantly improves electron transfer rates, facilitating quicker reactions.
Corrosion Resistance: Gold protects the underlying titanium and alloy from degradation, extending the electrode's lifespan.
High Performance: Maintains effective functionality even in harsh electrolytic environments.
Applications
Electrolysis: Suitable for applications requiring efficient hydrogen and oxygen production.
Fuel Cells: Ideal for use in high-performance fuel cell systems.
Chemical Processing: Applicable in various electrochemical processes demanding reliability and durability.
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Youveim® E129 FeCoNi - Titanium Mesh Electrode
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Product Code | Description | Price and Specifications | Lead Time |
| Youveim® E129(SC) FeCoNi - Titanium Mesh Electrode | 1.0mg/cm2 FeCoNi: $160 (5*5cm); $480 (10*10cm); $1440 (20*20cm)
2.0mg/cm2 FeCoNi: $180 (5*5cm); $540 (10*10cm); $1620 (20*20cm) 3.0mg/cm2 FeCoNi: $200 (5*5cm); $600 (10*10cm); $1800 (20*20cm) 4.0mg/cm2 FeCoNi: $220 (5*5cm); $660 (10*10cm); $1980 (20*20cm) | Ask for quote |
| Youveim® E129T(SC) FeCoNi - Titanium Mesh Electrode with Hydrophobic Interface | 1.0mg/cm2 FeCoNi: $160 (5*5cm); $480 (10*10cm); $1440 (20*20cm)
2.0mg/cm2 FeCoNi: $180 (5*5cm); $540 (10*10cm); $1620 (20*20cm) 3.0mg/cm2 FeCoNi: $200 (5*5cm); $600 (10*10cm); $1800 (20*20cm) 4.0mg/cm2 FeCoNi: $220 (5*5cm); $660 (10*10cm); $1980 (20*20cm) | Ask for quote |
| Youveim® E129PT(SC) FeCoNi - Platinized Titanium Mesh Electrode
| 1.0mg/cm2 FeCoNi: $180 (5*5cm); $660 (10*10cm); $2240 (20*20cm)
2.0mg/cm2 FeCoNi: $200 (5*5cm); $740 (10*10cm); $2560 (20*20cm) 3.0mg/cm2 FeCoNi: $220 (5*5cm); $800 (10*10cm); $2900 (20*20cm) 4.0mg/cm2 FeCoNi: $240 (5*5cm); $900 (10*10cm); $3200 (20*20cm) | Ask for quote |
| Youveim® E129G(SC) FeCoNi - Gold Plated Titanium Mesh Electrode
| 1.0mg/cm2 FeCoNi: $220 (5*5cm); $800 (10*10cm); $2900 (20*20cm)
2.0mg/cm2 FeCoNi: $240 (5*5cm); $900 (10*10cm); $3200 (20*20cm) 3.0mg/cm2 FeCoNi: $260 (5*5cm); $1000 (10*10cm); $3600 (20*20cm) 4.0mg/cm2 FeCoNi: $280 (5*5cm); $1060 (10*10cm); $4000 (20*20cm) | Ask for quote |
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The above are electrodes prepared by spray coating (SC) process, and screen printing (SPC) or coating (BC) processes can also be used.
Default use[Research grade titanium mesh (thickness 0.28mm, aperture 25 µ m)], Users can also specify other thicknesses or models of titanium mesh (such as stretch mesh, punched mesh, woven mesh, etc.), [Accelerate® FeCoNi nanocatalyst] As a catalyst.
Worldwide shipping via DHL, SF-Express & other requested carriers.
Payments via Bank Transfer, Paypal, Credit card (via Taobao), Alipay, Wechat-pay are accepted.