Thermal Conductivity Carbon Nanotubes (SWCNT 90-95wt% OD:1-2nm Length:15-30µm)
Thermal Conductivity Carbon Nanotubes
Thermal Conductivity Carbon Nanotubes SWCNT | |
Product No | NRE-32012 |
CAS No. | 308068-56-6 |
Length | 15-30µm |
Outer Diameter | 1-2nm |
APS | 3-6 nm |
Purity | 90-95wt% |
Form | Powder |
Molecular Weight | NA |
Thermal Conductivity Carbon Nanotubes SWCNT
Introduction
Thermal conductivity carbon nanotubes SWCNT are renowned for their exceptional thermal conductivity, which can reach values exceeding 3000 W/m·K under ideal conditions. This remarkable property arises from their unique structure— a one-dimensional arrangement of carbon atoms in a hexagonal lattice that allows for efficient heat transfer through phonon transport. Their high thermal conductivity, combined with lightweight and mechanical strength, makes SWCNT a subject of extensive research for various applications in advanced materials and technologies.
Applications
Thermal Management Materials:
Heat Sinks and Conductors: SWCNT are used in thermal interface materials, heat sinks, and heat spreaders to improve thermal dissipation in electronic devices, ensuring efficient cooling and enhancing performance.
Composite Materials:
Enhanced Thermal Conductivity: When incorporated into polymers or other matrices, SWCNT can significantly improve thermal conductivity, making them suitable for applications in aerospace, automotive, and electronics where temperature control is crucial.
Energy Storage and Conversion:
Batteries and Supercapacitors: The incorporation of SWCNT can enhance the thermal stability and performance of batteries and supercapacitors, contributing to better charge/discharge rates and safety.
Nanotechnology Applications:
Thermal Interface Layers: SWCNT can be used in nanoscale devices as thermal interface layers to efficiently manage heat flow in microelectronics and nanotechnology applications.
Heating Elements:
Flexible Heating Devices: SWCNT can be used in flexible heating elements, benefiting from their lightweight and high thermal conductivity for applications in clothing, automotive seats, and more.
Thermal Sensors:
Temperature Sensing: SWCNT can be integrated into sensors for real-time temperature monitoring due to their sensitivity to temperature changes, providing valuable data in various industrial and research settings.
Thermal Barrier Coatings:
Protective Coatings: SWCNT can be used in coatings that require thermal management, helping to protect sensitive materials from extreme temperatures while maintaining structural integrity.
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