Graphene Nanoplatelet, Purity: 99.9%, Size: 3 nm, S.A: 800 m2/g, Dia: 1.5 μm
- SKU:
- NG01GNP0109
- Shipping:
- Calculated at Checkout
Description
5 grams: 19 €
25 grams: 57 €
100 grams: 164 €
500 grams: 592 €
1000 grams: 869 €
Graphene Nanoplatelet Purity: 99.9%, Size: 3 nm, S.A: 800 m2/g, Dia: 1.5 μm
Graphene Nanoplatelets are nanoparticles consisting of short stacks of platalet-shaped graphene sheets that are in a planar form. Graphene nanoplatelets are excellent electrical and thermal conductors as a result of their pure graphitic composition. Graphene nanoplatelets help increase thermal, electrical conductivity and stability and improve barrier properties. Unique features of graphene nanoplatelets benefit it greatly to gain a place in the market.
We supply Graphene Nanoplatelets with high quantities and more types for different applications and requirements.
Technical Properties of Graphene Nanoplatelets
| Purity | 99.9 % |
| Thickness (nm) | 3 |
| Diameter (μm) | 1.5 |
| Specific Surface Area (m2/g) | 800 |
| Conductivity (s/m) | 1500-1980 |
| Color | Black |
Raman Image

TEM Images


Applications of Graphene Nanoplatelets
- Use as a high performance additive for composites with PPO, POM ,PPS, PC, ABS, PP, PE, PS, Nylon and rubbers.
- Can improve composites tensile strength, stiffness, corrosion resistance, abrasion resistance and anti-static electricity and lubricant properties.
- For all mechanical properties modifications, typical amounts are about 2-6wt%
- For conductivity modification, typical amounts are about 2-8wt%
Additional Information: The addition of Graphene to different composites show improvements in their physical properties. These improvements include electrical conductivity, thermal conductivity, hardness, strength, viscosity etc. Moreover, graphene can replace materials that are used in today’s applications resulting in enhancement of their applications. For example graphene can be integrated into plastics such as epoxy to create a material that can replace steel in the structure of aircraft, improving fuel efficiency, range and reducing weight. It could even be used to coat aircraft surface material to prevent electrical damage resulting from lightning strikes due to its high conductivity.
FAQ
FAQ About Nanografi Graphene Nanoplatelet, 99.9% Purity, 3 nm, 800 m²/g
1) What are the key specifications of Nanografi's 3 nm Graphene Nanoplatelet?
Nanografi's Graphene Nanoplatelet, SKU NG01GNP0109, has a purity of 99.9%, a thickness of 3 nm, a diameter of 1.5 µm, a specific surface area of 800 m²/g and a conductivity of 1500-1980 S/m.
2) What is the purity of the 3 nm Graphene Nanoplatelet?
The Nanografi Graphene Nanoplatelet is specified at 99.9% purity. This purity value applies to the 3 nm thickness, 1.5 µm diameter and 800 m²/g specific surface area grade.
3) What are the thickness and lateral diameter of Nanografi Graphene Nanoplatelet NG01GNP0109?
Nanografi Graphene Nanoplatelet NG01GNP0109 has a specified thickness of 3 nm and a diameter of 1.5 µm.
4) What is the specific surface area of the 3 nm Graphene Nanoplatelet?
The specific surface area is specified as 800 m²/g. This value is one of the defining characteristics of Nanografi's 99.9% purity, 3 nm Graphene Nanoplatelet grade.
5) What is the conductivity of Nanografi's 99.9% purity Graphene Nanoplatelet?
The conductivity of 3 nm Graphene Nanoplatelet is specified as 1500-1980 S/m.
6) Can Nanografi's Graphene Nanoplatelet be used as an additive in polymer composites?
Yes. The product page lists use as a high-performance additive in composites based on PPO, POM, PPS, PC, ABS, PP, PE, PS, Nylon and rubber systems.
7) What loading range is recommended for mechanical property modification?
For mechanical property modification, the product page gives a typical Graphene Nanoplatelet loading range of approximately 2-6 wt%.
8) What loading range is recommended for conductivity modification?
For conductivity modification, the product page gives a typical Graphene Nanoplatelet loading range of approximately 2-8 wt%.
9) Which composite properties can be modified using this Graphene Nanoplatelet grade?
The product page states that Graphene Nanoplatelets can be used to modify tensile strength, stiffness, corrosion resistance, abrasion resistance, anti-static properties and lubricant properties in composite systems.
10) Is the 3 nm Graphene Nanoplatelet suitable for electrical and thermal property modification?
Yes. Nanografi lists electrical conductivity and thermal conductivity among the physical properties that can be improved when Graphene Nanoplatelets are incorporated into composite systems.
11) What distinguishes Nanografi's 3 nm, 800 m²/g Graphene Nanoplatelet from other GNP grades?
This grade is defined by the specific combination of 99.9% purity, 3 nm thickness, 1.5 µm diameter, 800 m²/g specific surface area and 1500-1980 S/m conductivity. These specifications provide a clear basis for comparing it with other Graphene Nanoplatelet grades.
12) What is the color of Nanografi Graphene Nanoplatelet NG01GNP0109?
Nanografi Graphene Nanoplatelet NG01GNP0109 is specified as black in color.