Products
1um Platinum Coating Grade-1 Ti-Mesh-Felt For Hydrogen Electrolyzer
Optimal Gas Diffusion
Dual-Sided Functionality
TOPTITECH's 1um Platinum Coating Grade-1 Ti-Mesh-Felt for Hydrogen Electrolyzer is crafted for optimal performance within hydrogen electrolysis chambers and represents a groundbreaking fusion of titanium expanded mesh and titanium fiber felt, united through a sintering process. This composite product seamlessly integrates 2-5 layers of titanium expanded mesh with a single layer of titanium fiber felt, offering a unique structural composition that ensures unparalleled support and breathability. Its dual-sided design, featuring titanium expanded mesh on one surface and titanium fiber felt on the other, not only enhances durability but also optimizes airflow within hydrogen electrolysis cells. Moreover, its dual functionality enables seamless double-sided platinum coating, enhancing electrolytic efficiency with meticulous 1-micron precision.

Designed to revolutionize hydrogen electrolysis operations, TOPTITECH's 1um Platinum Coating Grade-1 Ti-Mesh-Felt for Hydrogen Electrolyzer embodies a paradigm shift in electrode materials. By integrating titanium expanded mesh and fiber felt through advanced sintering techniques, this composite material delivers unparalleled structural robustness and enhanced gas permeability critical for efficient electrolysis processes. Its dual-facing configuration not only provides superior support but also facilitates the application of platinum coatings on both sides with remarkable precision, elevating electrolytic performance to new heights.
Products Specifications
| Material | GR1 titanium expanded mesh+Gr1 titanium fiber felt | |||
| Diameter | 95mm | |||
| Thickness | 1.5mm, 2.0mm (other thickness can be customized) | |||
| Coating | 1um double-side platinum coating | |||
| Technique | Sintering | |||
Products Features

Enhanced Structural Support: The composite design, blending multiple layers of titanium stretch mesh with titanium felt, ensures superior structural integrity, providing robust support for electrolysis operations.
Optimal Gas Diffusion: With a carefully engineered composition, this product offers improved breathability and gas diffusion properties, optimizing the performance of hydrogen electrolyzer cells.
Dual-Sided Functionality: Featuring titanium stretch mesh on one side and titanium felt on the other, this material promotes efficient gas flow and electrolytic reactions, enhancing overall system productivity.

Platinum Coating Efficiency: The ability to double-coat both surfaces with a 1um platinum layer significantly boosts catalytic efficiency, leading to enhanced electrolysis rates and improved energy conversion.
Increased Durability: The sintering process used in manufacturing results in a durable and long-lasting composite material, capable of withstanding harsh electrolysis environments for extended periods.
Enhanced Electrolytic Performance: By combining the strengths of titanium mesh and felt in a single product, this composite material elevates electrolytic performance, offering a competitive edge in hydrogen production processes.
applications
01
Hydrogen Production
Ideal for use in hydrogen production processes, where the composite material's structural design and enhanced gas diffusion properties contribute to efficient electrolysis and high purity hydrogen generation.
02
Electrolysis Cells
Suited for electrolysis cells within various industrial settings, this product improves the performance of electrolytic reactions by providing optimal support and gas permeability, ultimately enhancing the overall efficiency of electrolyzer systems.
03
Renewable Energy
In renewable energy applications, such as fuel cells and energy storage systems, this composite material plays a crucial role in facilitating the electrolysis of water to produce clean hydrogen, supporting the transition to sustainable energy solutions.

04
Chemical Industry
Within the chemical industry, this product finds utility in electrolytic processes for the production of chemicals and compounds, where its dual-sided structure and platinum coating enhance catalytic efficiency and reaction rates.
05
Research and Development
Widely applicable in research laboratories and development facilities, this composite material serves as a valuable tool for studying electrolysis mechanisms, improving electrode performance, and advancing the field of hydrogen technology.
06
Electrolyzer Upgrades
Suitable for retrofitting existing electrolyzer systems, the 1um Platinum Coating Grade-1 Ti-Mesh-Felt offers a cost-effective solution to enhance electrolytic performance, extend equipment lifespan, and increase overall operational efficiency.

Contact us
Tel: 0917-3873009
Phone: +86 18992731201
Email: zhangjixia@bjygti.com
Fax: 0917-3873009
Address: No. 195, Gaoxin Avenue, High-tech Development Zone, Baoji City, Shaanxi, China
Whatsapp: +86 18992731201
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