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Carbon Nanotubes Doped with 52 wt% Graphene Nanopowder/Nanoparticles

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NG01SC0706
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$58.71
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Description

1 gram: 50 € 
5 grams: 90 €                           
25 grams: 230 €                         
100 grams: 540 € 
500 grams: 1850 € 
1000 grams: 2950
 €                  

Please contact us for quotes on larger quantities !!!
 

Carbon Nanotubes Doped with 52 wt% Graphene Nanopowder/Nanoparticles

Graphene Purity: 99%, Thickness: 5 nm, CNT Purity: >97 wt%

Carbon Nano Tubes doped with graphene, one of the promising graphene derivatives, is a hybrid structure composes of a covalently bonded graphene and carbon nano tubes. The hybrid material, CNT doped with graphene, extends the excellent properties of low-dimensional carbon materials (e.g., graphene, carbon nanotube - CNT) such as electrical condctivity and large specific surface area. CNT doped with graphene can be used in many various applications in areas such as energy storage, supercapacitor and building blocks composite. Nanografi supplies Carbon Nanotubes Doped wtih 52 wt% Graphene products with high quantity and low price and many types for different applications. 

Technical Properties

52 wt% Graphene Nanopowder/Nanoparticles    
Purity 99%  
Thickness (nm) 5  
Diameter (μm) 1.0-12.0  
Specific Surface Area (m2/g) 500-1200  
conductivity (s/m) 1000-1500  
Shape two-dimensional  
Elemental Analysis C O
  99.6 0.4
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–graphene hybrids improve lithium-ion batteries by enhancing conductivity, cycle life, and mechanical stability. In supercapacitors they boost capacitance and charge–discharge efficiency, while their porous structure supports hydrogen storage and fuel cell catalyst layers.
  • Electronics & Optoelectronics: They serve as conductive inks for flexible electronics, high-mobility channels in transistors, transparent layers in displays, and hybrid optoelectronic materials for solar cells and photoluminescence.
  • Biomedical & Biosensing: In biosensors they enable sensitive detection through fast electron transfer, while in drug delivery they act as carriers with controlled release. CNT–graphene nanoprobes also support imaging and tracking applications.
  • Composites & Structural Materials: As fillers in polymer, ceramic, and metal composites, they enhance tensile strength, modulus, toughness, and conductivity, making them valuable for aerospace, automotive, and construction materials.
  • Catalysis & Environmental: They act as catalyst supports in electrochemical reactions, conductive fillers in gas-discharge tubes, and adsorbents for pollutants, combining high surface area with hybrid reactivity.

 

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