TCI G0671 Graphene Nanoplatelets are advanced nanocarbon materials composed of thin graphene layers with a thickness of approximately 5 nm and a diameter of about 7 micrometers. These materials are widely used in laboratories for enhancing the mechanical, electrical, and thermal properties of composite materials. Their unique structure allows for efficient dispersion in various media, making them a versatile component in material science research. As a key ingredient in nanocarbon-based applications, they support innovation in developing new materials with enhanced performance characteristics.
The exceptional properties of TCI G0671 Graphene Nanoplatelets include a high surface area of 135 m²/g, which contributes to their reactivity and ability to interact with different substances. This high surface area, combined with their small particle size and uniform dispersion, makes them highly effective in improving conductivity, strength, and thermal stability. These characteristics make them a preferred choice for researchers seeking to optimize material performance in both academic and industrial settings.
In Indonesian laboratories, TCI G0671 Graphene Nanoplatelets are commonly used in material development, nanotechnology research, and composite formulation. Their ability to enhance the properties of polymers, conductive materials, and insulation systems makes them essential for a wide range of scientific applications. Their widespread use in both academic and industrial research underscores their importance in advancing nanocarbon-based technologies.
- Conductive Composite Development: TCI G0671 Graphene Nanoplatelets are ideal for creating conductive composites due to their high electrical conductivity and ability to disperse uniformly in polymer matrices.
- Thermal Management Materials: Their high thermal conductivity makes them suitable for applications requiring efficient heat dissipation, such as in electronic cooling systems and thermal interface materials.
- Mechanical Reinforcement of Polymers: The high surface area and mechanical strength of these nanoparticles enhance the mechanical properties of polymer-based materials, making them useful in structural composites.
- Electrode Material for Energy Storage: The unique structure of TCI G0671 Graphene Nanoplatelets allows for efficient electron transport, making them suitable for use in battery and supercapacitor electrodes.
- Nanocarbon-Based Coatings: Their uniform dispersion and reactivity make them effective in creating advanced coatings with enhanced durability and functional properties.
| Brand | TCI |
|---|---|
| CAS number | 1034343-98-0 |
| Molecular formula | — |
| Purity | — |
| Category | Materials Science > Nanocarbon Materials > Graphenes and Graphene Oxides (GOs) |
| Pack sizes | As per supplier specifications |
| Physical form | Graphene Nanoplatelets |
| Storage | Store in a cool, dry place away from moisture and direct sunlight |
TCI G0671 Graphene Nanoplatelets should be stored in a cool, dry environment to maintain their integrity and prevent degradation. They are best kept in sealed containers to avoid exposure to moisture and contaminants. Due to their high surface area and reactivity, it is important to handle them with care to prevent unnecessary dispersion in the air. Proper personal protective equipment should be worn when handling these materials to ensure laboratory safety. Storage conditions should be controlled to maintain optimal performance and stability of the material. Regular monitoring of storage conditions is recommended to ensure long-term quality and usability in research applications.
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