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Graphitized Carbon Nanofibers, Purity: > 99.9%, Outside Diameter: 50-150 nm, Length: 1-15 μm

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NG01AM0110
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Description

25 gram/195 €
100 grams/485 €
500 grams/1240 €
1000 grams/1970 €

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Graphitized Carbon Nanofibers Purity: > 99.9%, OD: 50-150 nm, Length: 1-15 μm

Technical Properties:

Purity > 99.9%
Color black
Outside Diameter (nm) 50-150
Length (μm) 1-15
Tap density (g/cm3) 0.05
True density (g/cm3) 2,2
Specific Surface Area (m2/g) 20
Ash 0.1 wt%
Electrical Conductivity (s/cm) 98
Manufacturing Method CVD procesed at 2800 °C

CAS: 99685-96-8

Applications:

Carbon NanoFibers have a variety of potential applications in different fields. These applications include medicine, mechanics, electric-electronics,
chemicals, energy and others. It can be applied in, 1-drug delivery, 2-biosensors, 3-CNT composites, 4-catalysis, 5-nanoprobes, 6-hydrogen storage,
7-lithium batteries, 8-gas-discharge tubes, 9-flat panel displays, 10-
supercapacitors, 11-transistors, 12-solar cells, 13-photoluminescence, 14-templates

 

FAQ

Technical FAQ About Graphitized Carbon Nanofibers, >99.9% Purity, 50-150 nm

1) Why choose graphitized carbon nanofibers instead of standard carbon nanofibers?

Graphitization is relevant when a higher degree of carbon ordering and improved electrical performance are important selection criteria. Nanografi NG01AM0110 is processed at 2800°C and combines >99.9% purity with an electrical conductivity of 98 S/cm.

2) How does the 50-150 nm diameter and 1-15 µm length affect material selection?

The combination of nanoscale diameter and micrometer-scale length gives the material a fibrous geometry that is relevant for conductive networks, composite reinforcement and electrode-related applications. These dimensions should be considered together with dispersion quality and the host matrix.

3) Can Nanografi Graphitized Carbon Nanofibers be used in conductive composites?

Yes. CNT and carbon-fiber-based composites are among the listed application areas. The 98 S/cm electrical conductivity and fibrous morphology make NG01AM0110 relevant where electrical pathways are required within a composite matrix.

4) Is this grade suitable for lithium-battery and supercapacitor research?

Yes. Lithium batteries and supercapacitors are listed applications for this graphitized carbon nanofiber grade. Its conductivity, carbon structure and 20 m²/g specific surface area can be evaluated when designing conductive networks or electrode architectures.

5) Can graphitized carbon nanofibers be used in catalysis and catalyst-support research?

Yes. Catalysis is one of the listed application areas. The fibrous carbon structure can be evaluated as a conductive support or structural component in catalyst systems, depending on the chemistry and processing route.

6) What is the significance of processing the carbon nanofibers at 2800°C?

High-temperature treatment at 2800°C is used to increase graphitic ordering within the carbon structure. For Nanografi NG01AM0110, this processing step distinguishes the grade from non-graphitized carbon nanofibers and is relevant when electrical conductivity and carbon structure are important.

7) How should this graphitized grade be compared with standard carbon nanofibers?

Comparison should focus on purity, graphitization treatment, diameter, length, specific surface area, ash content and electrical conductivity. Related non-graphitized grades can be reviewed in Nanografi's Carbon Nanofibers category.

8) Where can related graphitized carbon nanofiber grades be reviewed?

Related high-temperature-treated materials can be found in Nanografi's Graphitized Carbon Nanofibers category.

9) Is this material relevant for sensors and electronic-device research?

Yes. Biosensors, transistors, flat-panel displays, gas-discharge tubes and nanoprobes are among the listed application areas. Final suitability depends on how the nanofibers are integrated into the device architecture and surrounding materials.

10) Can this grade be considered for hydrogen-storage research?

Yes. Hydrogen storage is listed among the research applications for graphitized carbon nanofibers. Material selection should consider surface area, carbon structure, purity and the specific adsorption or storage mechanism being studied.

11) Where can broader carbon nanotube and nanofiber options be compared?

Nanografi's Carbon Nanotubes portfolio includes carbon nanofibers, graphitized CNTs, multi-walled CNTs, single-walled CNTs and functionalized grades for comparison by structure, purity and application.

12) Where can published research involving Nanografi carbon nanomaterials be reviewed?

Researchers can use Nanografi's Carbon Nanotube Publication List and Publication Library to review examples of carbon nanotubes, carbon nanofibers and related materials used in academic studies.

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