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Graphene-Modified Titanium Anodes

Updated : Jul. 17, 2026

Chalco supplies graphene-modified titanium anodes made with pure titanium substrates and graphene-modified precious-metal composite coatings. They can be used for electrolytic copper foil production, PCB copper plating, electrochlorination, industrial wastewater treatment, and other electrochemical applications. Custom anode plates, anode meshes, curved anodes, and electrode assemblies are available.

graphene-modified titanium anodes

Available Product Forms

Based on the electrolyzer design, operating conditions, and installation requirements, Chalco can provide graphene-modified titanium anodes in different shapes and with various connection methods.

Titanium Substrate: TA1 / Grade 1

Substrate Thickness: 1 mm / 2 mm / Custom

Coating: Graphene-Modified Precious-Metal Composite Coating

Product Forms: Plate, Mesh, Curved Anode, and Custom Assemblies

Dimensions: Fabricated to Drawings or Equipment Requirements

  • Titanium Anode Plate
    Titanium Anode Plate

    Suitable for electrochemical oxidation of wastewater, electrochlorination, and other industrial electrolysis equipment. Dimensions, hole positions, and connection structures can be customized.

  • Titanium Anode Mesh
    Titanium Anode Mesh

    Mesh opening, dimensions, and electrical connection method can be customized according to the effective reaction area and current distribution requirements.

  • Curved Titanium Anode
    Curved Titanium Anode

    Fabricated to the curved base, electrode gap, and mounting-hole positions of an electrolytic copper foil machine, with custom segmented structures available.

  • Custom Electrode Assembly
    Custom Electrode Assembly

    Anodes, connectors, and electrode assemblies can be supplied according to electrolyzer drawings, existing electrode samples, or equipment parameters.

Why Choose Our Graphene-Modified Titanium Anodes

Our graphene-modified titanium anodes combine pure titanium substrates with graphene-modified precious-metal composite coatings. Process control covers substrate inspection, surface treatment, coating and sintering, and performance testing to provide stable, customizable electrode options for different industrial electrolysis projects.

Lower Resistance and Operating Power Consumption

The graphene-modified composite coating helps reduce electrode resistance and cell voltage, lowering electrical energy loss during continuous electrolysis.

More Stable Current Distribution

Uniform coating and customized electrode structures help improve current distribution and support stable operation in copper plating, copper foil production, electrochlorination, and other processes.

Support for High-Current-Density Operation

Based on the electrolyte, current density, and cell design, we can adjust the electrode dimensions, effective area, and coating option to meet high-load electrolysis requirements.

Coatings Customized for Different Reactions

The graphene-modified composite coating is matched to the target reaction, such as chlorine evolution, copper plating, or oxidation of organic contaminants, rather than using a single general-purpose formulation.

Stable Coating and Long Service Life

Titanium substrate pretreatment, multilayer coating, high-temperature sintering, and accelerated life testing improve coating adhesion stability and help reduce electrode replacement and equipment downtime.

*Actual performance depends on the coating formulation, electrolyte composition, current density, operating temperature, and electrolyzer design.

Main Applications

Based on the electrolyte, target reaction, current density, and equipment design, Chalco graphene-modified titanium anodes can be matched with different coatings, shapes, and connection methods to suit copper foil, PCB, electrochlorination, and industrial wastewater treatment projects.

Electrolytic Copper Foil

Anodes are customized to the curved base, cathode drum, and electrode-gap requirements of the copper foil machine. They support high-current-density operation and help maintain stable cell voltage and current distribution.

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Electrolytic Copper Foil
PCB Copper Plating

PCB Copper Plating

Suitable for direct-current and pulse-reverse copper plating. Titanium mesh anodes can be customized to the plating tank design to help improve current distribution, plating uniformity, and additive utilization.

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Electrochlorination

Used in sodium hypochlorite generators and brine or seawater electrochlorination systems. Polarity-reversal operation, electrode assemblies, and coordinated electrolyzer structures are supported.

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Electrochlorination
Electrochemical Wastewater Treatment

Electrochemical Wastewater Treatment

Used for high-salinity, chemical, electroplating, membrane-concentrate, and refractory organic wastewater. Electrode options can be customized according to water quality, current density, and treatment objectives.

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Performance Benefits in Different Applications

The coating, structure, and effective reaction area of graphene-modified titanium anodes can be adjusted to the specific process, providing electrode options that address power consumption, current distribution, maintenance frequency, and treatment efficiency in different applications.

Application Primary Customer Concerns Value Provided by the Electrode
Electrolytic Copper Foil High cell voltage, uneven current distribution, and changes in electrode gap Custom curved structure to maintain a stable electrode gap, reduce resistance, and support high-current-density operation
PCB Copper Plating Additive consumption, plating uniformity, and anode replacement frequency Improves current distribution, helps stabilize plating quality, and extends the coating operating cycle
Electrochlorination Electrode scaling, high operating power consumption, and frequent maintenance Supports low cell voltage and polarity-reversal operation, reducing scaling and acid-cleaning requirements
Wastewater Treatment COD removal efficiency, electrode life, and long-term operating cost Provides strong electrochemical oxidation capability and supports high-load, long-term continuous treatment

Custom Anodes and Project Support

In addition to standard titanium anodes, we can provide electrode design, coating selection, replacement fabrication, and test validation based on existing equipment, operating conditions, and project objectives.

Customization to Drawings: Fabrication based on electrode dimensions, shape, hole positions, curvature, and connection structure.

Existing Electrode Replacement: Replacement options compatible with the existing electrolyzer can be provided from an existing electrode sample, photographs, or equipment parameters.

Coating Selection: The composite coating option is determined according to the electrolyte, target reaction, current density, and operating temperature.

Electrode and Cell Integration: Coordinated matching is available for anodes, cathodes, electrode frames, electrical connections, and electrolyzer structures.

Sample and Pilot Support: Project-stage samples, laboratory electrodes, or pilot assemblies can be provided to verify treatment results and operating parameters.

Quality Control and Quotation Support

We apply process control from the titanium substrate and surface treatment through coating sintering and finished-product inspection. Raw-material spectroscopic testing, coating equipment, and accelerated life testing help improve electrode batch consistency and long-term operating reliability.

Send Us Your Electrode Drawings or Operating Conditions

Please provide the application, electrolyte, current density, operating temperature, electrode dimensions, electrolyzer drawings, required service life, and quantity so we can determine the electrode structure, coating option, and quotation.

Chalco can provide you the most comprehensive inventory of titanium products and can also supply you customized products. Precise quotation will be provided within 24 hours.

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