High conductive composite coating (screen printing) delivers optimized electrical conductivity, superior adhesion, and excellent mechanical stability. Designed for advanced applications, it ensures uniform dispersion, extended durability, and high-performance adaptability.
Product Overview
The high conductive composite coating is a graphene-based conductive material, formulated through a specific process involving resin, solvents, dispersants, and other components. This coating is designed for screen printing applications and can create high-conductivity patterns on various substrates, including paper, plastic films, and metal foils. Its superior conductivity and printability make it ideal for flexible electronics, smart packaging, and electromagnetic shielding applications.
Product Features
- Exceptional Conductivity: Provides excellent conductivity, effectively eliminating surface static or serving as a conductive and heating element.
- Printability: Designed with excellent printability, suitable for screen printing and other printing methods.
- Adhesion: Once printed, it adheres firmly to the substrate, ensuring durability and resistance to peeling.
- Heat Resistance: Capable of withstanding high temperatures, offering good thermal stability to avoid failure under heat stress.
Applications
- Flexible Electronics Printing: Used for printing touch switches, RFID systems, and smart packaging in flexible electronic devices.
- Biosensors: Enhances the sensitivity and stability of biosensors.
- Conductive Circuits: Used as a conductive material for the fabrication of flexible printed circuit boards.
- Electronics and Communication Devices: Applied in electronic and communication devices that require electromagnetic shielding.
Technical Parameters | Values |
Solid Content | 16±1 wt% |
Solvent | Water |
Sheet Resistance | ≤10 Ω/□ (25 μm) |
Viscosity | 15000-22000 mPa.s |
Particle Size D50 | ~13 μm |
Particle Size D90 | ~49 μm |
Graphene Particle Size | 5-15 μm |
Graphene Thickness | 2-5 nm |
Carbon Nanotube Outer Diameter | 5-15 nm |
Carbon Nanotube Length | <10 μm |