Copper Foam Sheet 100×100×2mm High Porosity ATOMFAIR®

$45.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

High-porosity copper foam sheet, 100×100×2mm, with 0.1–10mm pores, 50%–80% porosity and ≥98% through-hole rate. Order now.

COPPER FOAM 0.1-10MM PORE 0.1-40MM THICKNESS HIGH POROSITY

ADVANCED POROUS METAL MATERIAL

Product Details

Copper foam features high porosity and excellent electrical and thermal conductivity, widely used in battery electrodes, heat dissipation, filtration, catalysis, electromagnetic shielding and pressure buffering applications.

I. Pore Characteristics and Bulk Density

Parameter Specification
Pore Size 0.1mm–10mm (5–120 ppi)
Thickness 0.1–40mm
Porosity 50%–80%
Through-hole Rate ≥98%
Bulk Density 0.1–0.8 g/cm³

II. Main Features

  • Copper foam exhibits excellent thermal conductivity, making it widely applicable for heat conduction and dissipation in motors, electrical appliances, and electronic components.
  • Its superior electrical conductivity has drawn significant industry attention for applications in nickel-zinc batteries and electrode materials for electric double-layer capacitors.
  • Thanks to its unique structural characteristics and human-friendly properties, copper foam serves as an excellent filtration material and water purification filter medium.

III. Application Areas

  • Electrode Materials: The outstanding electrical conductivity allows copper foam to be widely used as a skeletal electrode material for new-type batteries such as nickel-zinc batteries and electric double-layer capacitors. It has already been trialed and adopted in production by several nickel-zinc battery manufacturers, and is also expected to be promoted as a current collector for electric double-layer capacitor electrodes. Moreover, the use of copper foam as an electrode material for electrolytic recovery of copper-containing wastewater holds great promise.
  • Catalysts: In many organic chemical reactions, high-specific-surface-area copper foam is often used as a catalyst in place of punched copper plates. Copper foam has also been successfully applied as a carrier for photocatalytic air purification.
  • Thermal Conduction Materials: With excellent thermal conductivity, copper foam is a superior flame-retardant material. It has been used in several high-end fire-fighting products overseas, especially for flame isolation. Its good thermal conductivity and structural permeability also make it suitable for heat-dissipating components in motors, electrical appliances, etc.
  • Acoustic and Electromagnetic Shielding Materials: Sound waves undergo diffuse reflection on the surface of copper foam, and noise reduction is achieved through expansion and micro-pore sound absorption mechanisms. The electromagnetic shielding performance of copper is close to that of silver, making copper foam an excellent electromagnetic shielding material.
  • Filter Materials: Relying on its favorable structural properties and human-friendly characteristics, copper foam has been applied in the field of filtration and also shows good potential for water purification devices.
  • Fluid Pressure Buffering Materials: Copper foam provides good dispersion and buffering for fluids, and can be used as a pressure reduction protection device for various pressure instruments, with excellent results.

Sizes can be customized. For any questions or specific customization requirements, please feel free to contact us at inquiry@atomfair.com
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

How does the through-hole rate and porosity of Atomfair copper foam affect its performance in battery electrodes and filtration applications?

With a through-hole rate of ≥98% and porosity ranging from 50% to 80%, the copper foam provides high permeability and a large active surface area. These properties enhance ion transport in battery electrodes and improve filtration efficiency while maintaining fluid flow. The pore size range of 0.1–10mm (5–120 ppi) allows selection based on specific application requirements.

Can this copper foam be used as an electrode material for nickel-zinc batteries and electric double-layer capacitors?

Yes. The source states that copper foam is used as a skeletal electrode material for new-type batteries such as nickel-zinc batteries and electric double-layer capacitors, and has been trialed by several nickel-zinc battery manufacturers. Its excellent electrical conductivity and porous structure make it suitable for these applications.

What customization options are available for integrating this copper foam into a specific research setup?

The product allows customization of sizes. The standard thickness range is 0.1–40mm, and pore size varies from 0.1–10mm. The specific variation offered is 100mm × 100mm × 2mm. Custom dimensions can be requested by contacting inquiry@atomfair.com.

Copper foam sheet (100mm x 100mm x 2mm) with 50-80% porosity and ≥98% through-hole rate, providing excellent electrical and thermal conductivity for battery, heat dissipation, and filtration applications.

Positive

  • Excellent thermal conductivity: Copper foam exhibits excellent thermal conductivity, making it suitable for heat dissipation in motors, electrical appliances, and electronic components.
  • High through-hole porosity: Through-hole rate ≥98% ensures high permeability and efficient fluid flow, ideal for filtration and catalytic applications.

Trade-offs

  • Maximum porosity 80%: Porosity is capped at 80%, which may limit achievable void volume for ultra-lightweight or high-surface-area applications.
  • Low bulk density range: Bulk density of 0.1–0.8 g/cm³ indicates relatively low mechanical strength, requiring careful handling to avoid deformation during processing.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).

size

100mm × 100mm × 2mm