Single wall carbon nanotubes Hydroxyl (SWCNT-OH) 1Kg

1 Kg.

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  • Layer: 1-2
  • Carbon: >C 74%
  • Carbon Purity : >94 %
  • Oxygen : >14 %
  • Length Micron: ~5 μm
  • Hydrogen: > 10 %
  • Thickness Nanometer: 1.8±0.4 nm
  • Sulfur: < 1%
  • Surface Area m2/g: >500 m2/g
  • Chlorine: 1%
  • Trace Metals: <0.01%
  • Ash: <0.1%

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Single walled Carbon Nanotubes Hydroxyl

Single wall carbon nanotubes Hydroxyl (SWCNT-OH) can be used a universal additive, simultaneously enhancing strength, electrical and/or thermal conductivity of most materials, including polymer composites, rubbers, metals and many others

Advantages of UCNT:-

  • High aspect ratio-     ~2000
Chemical analysis, value expressed in mass percentage:
Carbon Oxygen Hydrogen Sulphur Chlorine Trace Metals Ash
>C74% >14 % > 10 % < 1% 1 % <0.01% <0.1%

TECHNICAL PARAMETERS:

Specification Unit of measure Value Method of evaluation
Carbon content Wt. % >94 TGA, EDX
Single wall CNT content Wt. % ≥85 TEM, TGA
Number of layers CNT Unit 1-2 AFM,TEM
Outer mean diameter CNT nm 1.8±0.4 AFM, TEM
Length of CNT μm ~5 TEM,SEM,AFM
Metal impurities Wt. % <2 EDX, TGA
Specific Surface area ~422 m2/g BET
Moisture content Wt. % <1 TGA

APPLICATION:-

Potential applications of carbon nanotubes are:

1] Additives in polymers;

2] Electron field emitters for cathode ray lighting elements;

3] Flat panel display;

4] Gas-discharge tubes in telecom networks;

5] Electromagnetic-wave absorption and shielding;

6] Energy conversion;

7] lithium-battery anodes;

8] Nanotube composites (by filling or coating);

9] Drug delivery;

10] Sensors;

11] reinforcements in composites.

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Single wall carbon nanotubes Hydroxyl (SWCNT-OH) 1Kg

Single wall carbon nanotubes Hydroxyl (SWCNT-OH) 1Kg

  • Layer: 1-2
  • Carbon: >C 74%
  • Carbon Purity : >94 %
  • Oxygen : >14 %
  • Length Micron: ~5 μm
  • Hydrogen: > 10 %
  • Thickness Nanometer: 1.8±0.4 nm
  • Sulfur: < 1%
  • Surface Area m2/g: >500 m2/g
  • Chlorine: 1%
  • Trace Metals: <0.01%
  • Ash: <0.1%