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(-COOH) Functionalized Short Length Single Walled Carbon Nanotubes, Purity: > 92%

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NG01SW0203
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25 grams/495 €  
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1000 grams/9940 €  
 
              

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(-COOH) Functionalized Short Length Single Walled Carbon Nanotubes

Purity: > 92%, OD: 1-2 nm 

Technical Properties:

Purity > 92 %
Content of (-COOH) 2.7%
Color black
Average Diameter 1.0 nm
Length 1-3 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

 sem-cooh-functionalized-short-single-walled-carbon-nano-tubes-purity92-.png

Applications:

  • Biomedical & Life Sciences: The carboxyl (-COOH) groups enhance aqueous dispersibility and biocompatibility, making these nanotubes ideal for targeted drug delivery, biosensors, and bioimaging. Their shortened length improves cellular uptake and enables covalent bonding with biomolecules, supporting precision diagnostics and therapeutic platforms.
  • Chemical & Catalytic Systems: These SWCNTs serve as efficient supports in heterogeneous catalysis, photocatalysis, and template-assisted synthesis. The -COOH functionality allows strong interaction with metal ions and active species, while the short morphology increases edge reactivity and surface accessibility.
  • Composites & Coatings: Short-length SWCNTs disperse uniformly in polar solvents and polymer matrices, enhancing mechanical reinforcement, thermal stability, and electrical conductivity in advanced composites. Their functionalized surfaces promote strong interfacial bonding in adhesives, films, and structural coatings.
  • Energy Storage & Conversion: These nanotubes improve electrode–electrolyte interface behavior in lithium-ion batteries, supercapacitors, and fuel cells. Their high conductivity and surface area support fast charge transfer, stable cycling, and efficient energy conversion.
  • Electronics & Optoelectronics: Used in gas-discharge tubes, transparent conductive films, flat panel displays, and thin-film transistors, these SWCNTs offer nanoscale integration, photoluminescent activity, and reliable charge transport. Their functionalized surfaces also enable selective patterning and device tuning.

 

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