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(-OH) Functionalized Single Walled Carbon Nanotubes, Purity: > 92%, SSA: 370 m2/g, Dia: 1.0 nm

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NG01SW0102
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5 grams/145 €                          
25 grams/495 €  
100 grams/1640 €     
500 grams/5960 €   
1000 grams/9940 €  
 
       

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(-OH) Functionalized Single Walled Carbon Nanotubes

Purity: > 92%, SSA: 370 m2/g, Dia: 1.0 nm

Single walled carbon nanotubes (SWCNTs, SWNTs) comprise of one-atom-thick sheets of graphene that rolled up to
form long hollow tubes. SWCNTs possess exceptional thermal, mechanical and electrical properties. These remarkable
properties lead to advances in performance in a wide range of materials and devices. Single-walled carbon nanotubes
are actively used in diverse area including energy storage, molecular electronics, nano mechanial devices, composites
and bio-sensing. We supply (-OH) Functionalized Single Walled Carbon Nano Tubes to fulfill our customers' need with
low prices and various options. 

Technical Properties: 

Purity > 92 %
Content of (-OH) 4.0%
Color black
Average Diameter 1.0 nm
Length 5-35 µm
OD 1-2 nm
ID 0.8-1.6 nm
Tap Density 0.15 g/cm3
True Density 2.2 g/cm3
SSA 370 m2/g
Ash 1.5 wt%
Thermal Conductivity 45-190 W/m.K
Electrical Conductivity 98 S/cm
Ig/Id 9
Manufacturing Method CVD
CAS No 308068-56-6

TEM Image 

 seem-cooh-functionalized-single-walled-carbon-nanotubes-purity-92-ssa-370-m2-g.png

Applications:

  • Biomedical & Biosensing: Hydroxyl groups improve aqueous stability and biocompatibility, making these nanotubes ideal for biosensors, drug delivery, and bioimaging. Their surface can be further modified for targeted molecular interactions.
  • Catalysis & Surface Chemistry: The -OH functionality enables strong interaction with metal ions and catalytic species, enhancing performance in heterogeneous catalysis, photocatalysis, and template-assisted synthesis.
  • Polymer & Composite Systems: Excellent dispersion in polar solvents and polymer matrices leads to improved mechanical reinforcement, thermal stability, and electrical conductivity in advanced composites and coatings.
  • Energy Devices: These SWCNTs support efficient charge transfer and interface behavior in supercapacitors, lithium-ion batteries, and fuel cells, contributing to higher energy density and cycle life.

 

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