TCI

1034343-98-0 Graphene Nanoplatelets 6-8nm(thick), 5micro m(wide) TCI G0441

1034343-98-0 Graphene Nanoplatelets 6-8nm(thick), 5micro m(wide) TCI G0441
Regular price Rp 1.979.250,00
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Graphene Nanoplatelets TCI G0441 are a type of nanomaterial composed of thin graphene layers, with a thickness of approximately 6–8 nm and a width of about 5 micrometers. These materials are widely used in scientific research and technological development, particularly in the fields of materials science, electronics, and energy. Due to their unique atomic structure, they exhibit excellent electrical and thermal conductivity, as well as high mechanical strength. In the laboratory, they serve as a key additive for enhancing the properties of composite materials, improving the performance of electronic devices, and supporting research into environmentally friendly materials. Their ability to significantly improve the mechanical and electrical properties of base materials makes them an essential component in advanced material development. The two-dimensional structure allows for strong interactions with various substrates, facilitating easy dispersion and integration into different formulations. Additionally, their good chemical stability ensures reliable and consistent results in laboratory settings, making them a preferred choice for researchers and developers.

The unique properties of TCI G0441 Graphene Nanoplatelets make them a preferred choice in laboratory settings. Their exceptional electrical conductivity enables their use in advanced electronic applications, such as conductive inks and flexible electronics. The high thermal conductivity allows for efficient heat dissipation, making them suitable for thermal management systems. Their mechanical strength contributes to the durability of composite materials, enhancing their structural integrity. The nanoscale dimensions also allow for fine-tuning of material properties, offering versatility in material design. These characteristics make them a versatile and reliable option for a wide range of scientific and industrial applications.

In Indonesian laboratories, TCI G0441 Graphene Nanoplatelets are commonly used in research and development projects focused on material science, electronics, and energy storage. They are also utilized in environmental and chemical research to develop sustainable and efficient materials. Their application is widespread in both academic and industrial settings, supporting innovation and technological advancement. The material is often integrated into composite formulations, electronic components, and energy-related devices, making it a valuable resource for researchers in Indonesia.

  • Graphene-based Composite Development: TCI G0441 Graphene Nanoplatelets are ideal for enhancing the mechanical and electrical properties of composite materials, allowing for the creation of advanced materials with superior performance.
  • Electronic Device Fabrication: The excellent electrical conductivity of these nanomaterials makes them suitable for use in electronic components, such as conductive inks and flexible circuits, improving device efficiency.
  • Energy Storage Research: Their high surface area and conductivity make them valuable in the development of batteries and supercapacitors, contributing to improved energy storage capabilities.
  • Thermal Management Systems: The superior thermal conductivity of TCI G0441 Graphene Nanoplatelets enables their use in thermal interface materials, helping to dissipate heat efficiently in electronic devices.
  • Environmental and Sustainable Material Research: These nanomaterials are used to develop eco-friendly materials, supporting research into sustainable and biodegradable alternatives for industrial applications.

Brand TCI
CAS number 1034343-98-0
Molecular formula
Purity
Category TCI
Pack sizes As per supplier specifications
Physical form Graphene Nanoplatelets
Storage Store in a cool, dry place away from moisture and direct sunlight

TCI G0441 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 nanoscale nature, they can be hazardous if inhaled or ingested, so appropriate personal protective equipment should be worn when handling. It is recommended to store them in a well-ventilated area to minimize the risk of airborne particles. Proper labeling and containment are essential to ensure safe handling and prevent accidental exposure. These precautions help maintain the quality and safety of the material in laboratory settings.