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3D Graphene on Nickel/Copper Foam

3D Graphene on Nickel/Copper Foam

650 INR/Bottle

Product Details:

  • Structural Formula Graphene: sp2 bonded carbon sheet
  • Shape Open cell foam, porous 3D structure
  • Molecular Formula Graphene: C; Nickel: Ni; Copper: Cu
  • Poisonous Yes
  • Other Names Graphene foam, 3D graphene supported on foam
  • Ph Level 7 (neutral)
  • Form Solid foam sheet or block
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3D Graphene on Nickel/Copper Foam Price And Quantity

  • 650 INR/Bottle
  • 1 Gram
  • 100 500 m (foam base)
  • Black surface (graphene), metallic core
  • Stable for over 2 years under recommended conditions
  • >2.1 x 10 S/m
  • CVD growth and direct deposition
  • Graphene layer >3000 W/mK
  • Up to 1200 m/g for graphene coating
  • Vacuum packed, moisture proof sealed bags
  • Available in custom shapes and sizes
  • >95%
  • Foam: 0.5 5 mm; Graphene coating: 1 100 m
  • Excellent compressive strength and resilience

3D Graphene on Nickel/Copper Foam Product Specifications

  • 3D graphene coated on nickel or copper foam
  • Graphene on Nickel/Copper
  • Insoluble in water; stable in common organic solvents
  • Odorless
  • Graphene layer up to 99% purity
  • Energy storage, supercapacitors, batteries, sensors, catalysis, EMI shielding
  • Store in dry, sealed containers at room temperature
  • 69029020
  • Graphene: 12.01 g/mol; Nickel: 58.69 g/mol; Copper: 63.55 g/mol
  • Not determined
  • Research and industrial grade
  • Conductive hybrid foam
  • Nickel: 7440-02-0, Copper: 7440-50-8, Graphene: 1034343-98-0
  • 0.45 Gram per cubic centimeter(g/cm3)
  • Nickel: ~2730C, Copper: ~2562C, Graphene: NA
  • Solid foam sheet or block
  • 7 (neutral)
  • 3D composite material
  • Electrochemical devices, laboratory research, industrial prototyping
  • Nickel foam: ~1455C, Copper foam: ~1085C, Graphene: decomposes above 600C
  • Nickel: 231-111-4, Copper: 231-159-6, Graphene: NA
  • Conforms to ASTM E2012, customized industrial specifications
  • Graphene: sp2 bonded carbon sheet
  • Open cell foam, porous 3D structure
  • Graphene: C; Nickel: Ni; Copper: Cu
  • Graphene foam, 3D graphene supported on foam
  • Yes
  • 100 500 m (foam base)
  • Black surface (graphene), metallic core
  • Stable for over 2 years under recommended conditions
  • >2.1 x 10 S/m
  • CVD growth and direct deposition
  • Graphene layer >3000 W/mK
  • Up to 1200 m/g for graphene coating
  • Vacuum packed, moisture proof sealed bags
  • Available in custom shapes and sizes
  • >95%
  • Foam: 0.5 5 mm; Graphene coating: 1 100 m
  • Excellent compressive strength and resilience

Product Description

Sheet Resistance
<600I/sq
Custom Order <300I/sq
Transparency >95%
Product Name

3D Graphene on Nickel/Copper Foam

Stock No. NCZ-GSW-0022
Purity > 99.9%
 CAS No. 7782-42-5 (graphene), 7440-02-0 (nickel)

Graphene Film

FET Electron Mobility on Al2O3 2000 cm2/Vs
Hall Electron Mobility on SiO2/Si  4000 cm2/Vs


Advanced Material Structure

Engineered with a 3D open-cell foam, this product combines graphene's exceptional properties with metallic cores of nickel or copper. The porous framework delivers high surface area and mechanical resilience, ensuring robust performance in demanding environments. Each sheet or block can be tailored to exact specifications, allowing enhanced integration across diverse scientific and industrial fields.


Remarkable Conductivity and Thermal Performance

Leveraging the intrinsic qualities of graphene, this composite achieves electrical conductivity exceeding 2.1 x 104 S/m and thermal conductivity above 3000 W/mK. This allows efficient charge and heat transfer, critical for applications in batteries, supercapacitors, electronic sensors, and electromagnetic interference shielding.


Versatile Applications and Reliable Quality

Perfect for laboratory research, industrial prototyping, and commercial-scale applications, this hybrid foam's versatility extends to electrochemical devices, catalysis, and advanced material development. Its production process complies with ASTM E2012 and customized standards, ensuring consistent purity and performance. Packaged to prevent moisture contamination, it maintains stability for over two years.

FAQ's of 3D Graphene on Nickel/Copper Foam:


Q: How is the 3D Graphene on Nickel/Copper Foam manufactured?

A: This composite is produced using chemical vapor deposition (CVD) growth and direct deposition methods, ensuring high-quality graphene coating uniformly on the nickel or copper foam substrate for superior electrical and thermal conduction.

Q: What are the main benefits of using this 3D graphene foam in energy storage devices?

A: Its exceptionally high surface area and conductivity enable greater charge storage and rapid electron transport, making it ideal for applications such as supercapacitors, batteries, and advanced sensors where performance and efficiency are paramount.

Q: When should this material be chosen over conventional conductors?

A: Choose this material when you require a combination of low weight, high conductivity, superior surface area, excellent porosity, and significant mechanical strength-features less attainable in conventional metal foams or flat graphene sheets.

Q: Where can the 3D graphene foam be used effectively?

A: It excels in energy storage systems, catalysis, electromagnetic shielding, thermal management assemblies, laboratory research, and industrial prototyping, offering compatibility with broad application fields for dealers, exporters, and manufacturers.

Q: What is the recommended process for handling and storing this graphene composite?

A: Store the foam in dry, sealed containers at room temperature to maintain its vacuum-packed, moisture-proof integrity. No special handling precautions are needed under standard laboratory practices, and the product remains stable for over two years.

Q: How can the product be customized to suit specific project requirements?

A: Customization is available for thickness (foam: 0.5-5 mm; coating: 1-100 m), pore size (100-500 m), shape, and dimensions, ensuring adaptability for both research and industrial-scale applications.

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