XFWP06 is a highly conductive water-based coating made of high-quality thin-layer graphene composite carbon nanotubes.

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Description
High conductivity graphene/carbon nanotube composite coatingProduct Name NameHigh conductivity graphene carbon nanotube composite coating Product Overview XFWP06 is a highly conductive water based coating made of high quality thin layer graphene composite carbon nanotubes. Technical Parameter Solid content: 161wt% Solvent: Water Conductivity: 80 150 S cm Viscosity:C000 mPa. s Granularity: D50 ? 13um D90 ? 49um Lateral size: 5 15 um Thickness: 2 5 nm OD: 5 15 nm Length:: 0 um Note: The above is a single
Product Name
Name:High conductivity graphene/carbon nanotube composite coating
Product Overview
Technical Parameter
Solid content:16±1wt%
Solvent: Water
Conductivity:80-150 S/cm
Viscosity:¡ãC000 mPa.s
Granularity:D50 ï½?13um
D90 ï½?49um
Lateral size:5-15 um
Thickness:2-5 nm
OD:5-15 nm
Length::0 um
Note:The above is a single measurement data,the test results of different batches fluctuated. The viscosity of the dispersion increases with time.
Product Features
High conductivity, the coating conductivity can reach 80-150 s/cm.
It is suitable for a wide range of substrates, has good bonding with the substrate, and has adhesion of 1-3 levels (cross-hatch method).
Waterbased paint, healthy and environmentally friendly, no odor before and after spraying and drying, and no irritating odor. The addition of graphene and carbon nanotubes can also enhance the mechanical properties of the coating, such as hardness, wear resistance, impact resistance, etc., thereby improving the service life and stabilityof the coating.
Application Fields
Electronic equipment: Conductive coatings for electronic components such as circuit boards, touch screens, and sensors to improve the performance and stability of electronic equipment.
Energy field: Used as electrode materials or current collector coatings in energy storage devices such as lithium-ion batteries and supercapacitors to improve energy density and charging and discharging efficiency.
Electromagnetic shielding: Used to prepare electromagnetic shielding materials to effectively shield electromagnetic wave interference and protect electronic equipment from the influence of the external electromagnetic environment.
Antistatic: Used as an antistatic coating in places where antistatic is required, such as electronic workshops, laboratories, etc.
Related Information
Please e-mail for the detailed characterization data.
E-mail:[email protected]
Shipping Notes
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Exchange/Return Notes
- We offer a 30-day return/exchange service after receiving.
- Final sale items are not eligible for returns or exchanges.
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