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Nano Carbon Materials
Single-Walled Carbon Nanotubes SWCNTs BC-XFS31
SWCNTs BC-XFS31 can be used as additives and catalysts in polymers, electronic field emitters for cathode ray lighting components, gas discharge tubes in telecommunications networks, energy conversion, lithium battery anodes, hydrogen storage, nanotube composites (by filling or coating); Sensors, reinforcements in composite materials, supercapacitors, etc..
SINGLE-WALLED CARBON NANOTUBES
BC-XFS31 Datasheet
1. Technical Parameters
Product Name | Industrial grade single-walled carbon nanotubes |
Appearance | Black Powder |
Diameter | 1-2nm (TEM) |
Length | 10-30um (SEM) |
Purity | ~95wt% (EDS) |
Specific Surface Area | ~1380m2/g |
Notes: The specific surface area value is the result of a single measurement, and the result difference is allowed between different batches. | |
2. Characterizations
Fig. 1 SEM Image
Fig. 2 SEM Image
Fig. 3 TEM Image
Fig. 4 TEM Image
Fig. 5 XRD Pattern
Fig. 6 Raman Spectrum
Element | Mass Percent (wt.%) | Atomic Percent (At.%) |
C | 80.93 | 86.82 |
O | 14.56 | 11.73 |
Ar | 4.51 | 1.45 |
Notes: EDS values are the results from single measurement, and differences are allowed among different batches. | ||
Table 1 Element Analysis Table (EDS)
3. Applications
Additives and catalysts in polymers, electronic field emitters for cathode ray lighting components, gas discharge tubes in telecommunications networks, energy conversion, lithium battery anodes, hydrogen storage, nanotube composites (by filling or coating); Sensors, reinforcements in composite materials, supercapacitors, etc..
4. Storage
Max storage life: 12 months. Keep at dry area under room temperature.
5. About carbon nanotubes
Carbon nanotubes can be seen as graphene sheets curled together, so they can be divided into single-walled carbon nanotubes (or single-layer carbon nanotubes, SWCNTs) and multi-walled carbon nanotubes (or multi-layer carbon nanotubes, MWCNTs) according to the number of layers of graphene sheets. When multi-walled carbon nanotubes begin to form, they easily become trap centers between layers and capture various defects, resulting in small hole like defects on the walls of multi-walled tubes. Compared with multi-walled tubes, single-walled tubes have a smaller diameter distribution range, fewer defects, and higher uniformity. The typical diameter of the single-walled tubes ranges from 0.6 to 2 nm, and the innermost layer of the multi-walled tubes can reach 0.4 nm, with a maximum thickness of several hundred nanometers. However, the typical tube diameter is 2-100nm.

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