Technical Specification:
- Material Composition:
- Chemical Formula: Carbon (C)
- Structure: Highly conductive nano-carbon material derived from acetylene gas.
- Particle Properties:
- Particle Size: 35–40 nm
- Nano-sized particles ensure excellent electrical conductivity and large surface area.
- Specific Surface Area: 70–80 m²/g
- High surface area facilitates superior electron transport and ionic interaction.
- Morphology: Spherical or near-spherical particles with high purity.
- Particle Size: 35–40 nm
- Electrical Conductivity:
- Conductivity: Extremely high electrical conductivity, supporting its use in applications demanding efficient electron transfer.
- Purity:
- High purity (≥99.9%), ensuring minimal impurities and superior electrochemical performance.
- Thermal Properties:
- Thermal Conductivity: High thermal conductivity makes it suitable for heat dissipation applications.
- Compatibility:
- Compatible with various polymers, metals, and electrolytes in composite formulations.
Applications:
- Primary Applications:
- Conductive Additive:
- Used in lithium-ion batteries, fuel cells, and supercapacitors as a conductive additive in the cathode, anode, or separator layers.
- Electrically Conductive Coatings:
- Enhances the conductivity of paints, coatings, and adhesives.
- Conductive Additive:
- Industries:
- Energy Storage:
- Used in lithium-ion batteries (LIBs) for electric vehicles, portable electronics, and renewable energy storage systems.
- Improves electrode conductivity, enhancing energy density and cycle life.
- Supercapacitors:
- Key material in double-layer supercapacitors for boosting charge/discharge rates.
- Fuel Cells:
- Facilitates efficient electron transport in catalyst layers.
- Conductive Rubber and Plastics:
- Imparts electrical conductivity to polymers and elastomers for antistatic and EMI shielding applications.
- Electronics:
- Used in electronic packaging, sensors, and electromagnetic shielding materials.
- Energy Storage:
- Advantages for Applications:
- High Electrical Conductivity:
- Enables efficient charge transfer in energy storage systems.
- Low Loading Requirement:
- Due to its high conductivity and surface area, minimal quantities are needed, reducing material costs.
- Improved Dispersion:
- Nano-sized particles ensure uniform dispersion in matrices, improving performance.
- High Electrical Conductivity:
- Specialized Uses:
- Advanced Batteries:
- Used in solid-state batteries and next-generation high-performance LIBs.
- Thermal Management:
- Applied in thermal interface materials for heat dissipation in electronics.
- Catalyst Support:
- Acts as a support material in catalysis due to its high conductivity and stability.
- Advanced Batteries:
Summary:
Conductive Acetylene Black Nano Powder (35–40 nm) is a versatile material offering exceptional electrical and thermal conductivity. Its nano-scale particle size, high purity, and compatibility with a variety of applications make it essential in energy storage, electronics, and advanced materials research.