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Carbon Nanotubes Doped with 12 wt% Copper (Cu) Nanopowder/Nanoparticles

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SKU:
NG01SC0404
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€90.00
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Description

5 grams: 90€                          
25 grams: 195 €  
100 grams: 370€  
500 grams: 960€
1000 grams: 1450€   
                

Please contact us for quotes on larger quantities !!! 

Carbon Nanotubes Doped with 12 wt% Copper (Cu) Nanopowder/Nanoparticles 

Carbon Nanotubes doped with copper nanoparticles combine CNTs’ exceptional electrical conductivity and mechanical strength with copper’s superior electrical, thermal, and catalytic properties. The hybrid composite forms a stable and uniform structure that enhances hardness, tensile strength, specific strength, and elastic modulus. This synergy makes CNT–Cu hybrids multifunctional materials suitable for energy storage, electronics, biomedical systems, catalysis, and advanced composites.

Technical Properties

12 wt% Cu Nanopowder/Nanoparticles  
Purity 99.99%
Average Particle Size (nm) 30
Specific Surface Area (m2/g) 40.0
True Density (g/cm3) 9
Color black
Shape near spherical
Carbon Nanotubes (Multi Walled Carbon Nanotubes)  
Purity > 97 wt%
Color black
Average Outside Diameter (nm) > 50
Average Inside Diameter (nm) 5
Length (µm) 15-25
Tap Density (g/cm3) 0.15
True Density (g/cm3) ~2.4
Specific Surface Area (m2/g)  > 65
Ash  < 1.5 wt%
Electrical Conductivity (S/cm) > 98

Applications

  • Energy & Storage: CNT–Cu hybrids are used in lithium-ion batteries and supercapacitors, where CNTs provide conductive pathways and copper nanoparticles enhance electrode conductivity, cycle stability, and charge transfer efficiency. They also support hydrogen storage and advanced energy devices.
  • Electronics & Optoelectronics: Applied in transistors, flat panel displays, and solar cells, CNT–Cu composites combine CNT conductivity with copper’s electrical and thermal properties to improve charge transport, optical performance, and device reliability.
  • Biomedical & Biosensing: Employed in biosensors and drug delivery systems, where copper’s bioactivity and CNT’s functional surfaces enable sensitive detection, controlled release, and nanoprobes for diagnostics.
  • Composites & Structural Materials: Integrated into polymer and ceramic composites, CNT–Cu hybrids improve hardness, tensile strength, and elastic modulus, making them suitable for aerospace, automotive, and construction applications requiring lightweight reinforcement with conductivity.
  • Catalysis & Environmental: Utilized as catalyst supports in electrochemical and photocatalytic reactions, leveraging copper’s catalytic activity and CNT’s conductive scaffolds. They are also applied in gas-discharge tubes, pollutant remediation, and environmental sensing.

 

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