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New conductive material nickel nanowires NiNWs Hongwu Nickel nanowires have a wide range of potential applications in electronic materials, catalysis, polymers, magnetic storage ultra-high density recording materials, sensors and self-lubricating materials. more
Transparent Colloidal Ag Antibacterial Nano Silver Colloid Ag (Antibacterial Nano Silver Colloid) has been well known antibacterial, antiviral and antifungal properties are enhanced by small particle size and large surface area. more
Nano silica particles used in epoxy resin, superhydrophobic coating nano silica powder Nano silica particles, 20-30nm, 99.8% purity, widely used in exposy resin and superhydrophobic coating. more
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Thermochromism refers to the phenomenon where a material undergoes color changes under temperature changes. This change is usually caused by changes in the electronic or molecular structure of the material. Its application principle mainly involves t...
Graphene is a multifunctional nano materials with many excellent properties of good electric and thermal conduction, lubricity, corrosion resistance, mechanical, etc. and it's widely used in many fields.
product origin:
Chinacolor:
BlackGraphene Nanoplatelet Used to Modify Thermosetting Resin
Specification of Graphene nanoplatelet:
Thickness: <100nm
Length: 5-20um
Purity: 99%
Color: black
Graphene has many excellent properties, such as high carrier mobility, high transmittance, high specific surface area, high Young's modulus, high fracture strength, etc, which make it an ideal filler for improving the performance of thermosetting resins.
Graphene/thermosetting resin is a composite material composed of graphene powder as reinforcement and thermosetting resin as matrix. Through the addition of graphene powder, the mechanical, electrical, corrosion resistance, ablation resistance and wear resistance properties of the thermosetting resin can be significantly enhanced. Effective dispersion of graphene powder is the key to improving the performance of thermosetting resins. Surface modification and proper mixing methods can significantly improve the dispersion of graphene in the resin matrix.
The above information is for reference only. For further details, they're subject to actual applications and tests.
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