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Expanded Graphite Nanoparticles

Expanded Graphite Nanoparticles

Expanded Graphite Nanoparticles
Product No NRE-8016-1
CAS No. 7782-42-5
Formula C
Molecular Weight 12.01g/mol
APS < 100 nm (Can be customized)
Purity 99.9%
Color Black

Expanded Graphite  Nanoparticles

Expanded Graphite Nanoparticles are advanced carbon-based nanomaterials known for their exceptional electrical conductivity, thermal conductivity, chemical stability, lightweight nature, and large surface area. These unique properties make them valuable across a wide range of industrial, research, and commercial applications.

One of the most important applications of expanded graphite is in energy storage systems. They are widely used as conductive additives in lithium-ion batteries, sodium-ion batteries, supercapacitors, and fuel cells. Their high electrical conductivity helps improve charge transfer efficiency, resulting in enhanced battery performance and longer cycle life.

In the field of polymer nanocomposites, expanded graphite are incorporated into plastics, rubbers, and resins to improve mechanical strength, thermal stability, and electrical conductivity. These reinforced materials are used in automotive components, aerospace structures, electronic housings, and industrial equipment.

Expanded graphite are also extensively utilized in thermal management applications. Due to their excellent heat dissipation capabilities, they are used in thermal interface materials, heat spreaders, cooling systems, and electronic devices where efficient heat transfer is critical for performance and reliability.

Another significant application is in electromagnetic interference (EMI) shielding. The conductive nature of expanded graphite nanoparticles enables them to absorb and dissipate electromagnetic radiation, making them useful in electronic devices, communication systems, and defense equipment.

In the coatings and lubricants industry, these nanoparticles enhance wear resistance, reduce friction, and improve corrosion protection. They are commonly added to protective coatings, conductive paints, and high-performance lubricants used in demanding industrial environments.

Environmental applications are also gaining attention. Expanded graphite can be used in water purification systems, adsorption technologies, and environmental remediation processes due to their high surface area and ability to interact with various contaminants.

Furthermore, researchers employ expanded graphite nanoparticles in sensors, catalyst supports, advanced electronics, and next-generation nanotechnology developments. Their versatility, durability, and multifunctional properties continue to drive innovation across numerous scientific and industrial sectors, making them an important material for modern technological advancements.

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