Technical Specification:
- Material Composition:
- Chemical Formula: Carbon (C)
- Type: Conductive carbon black.
- Structure: High-structure carbon black with excellent conductivity.
- Particle Properties:
- Particle Size: ~50 nm (primary particles), aggregates forming micron-sized clusters.
- Specific Surface Area: ~250 m²/g.
- Pore Volume: ~2.5–3.0 cm³/g.
- Morphology: Irregular, aggregated particles with a high surface-to-volume ratio.
- Electrical Conductivity:
- High Conductivity: Low percolation threshold, making it highly efficient as a conductive additive.
- Thermal Properties:
- Thermal Stability: Stable up to high temperatures, suitable for battery applications.
- Chemical Stability:
- Resistant to most chemicals, acids, and bases, ensuring stability in harsh environments.
- Dispersion:
- Disperses uniformly in aqueous or organic solvents when combined with suitable dispersing agents.
Applications:
- Primary Applications:
- Conductive Additive:
- Used in lithium-ion batteries, fuel cells, and supercapacitors as a conductive additive in electrodes.
- Catalyst Support:
- Acts as a support material for catalysts in fuel cells and electrochemical applications.
- Conductive Additive:
- Industries:
- Energy Storage:
- Enhances the conductivity of cathodes and anodes in lithium-ion batteries, fuel cells, and supercapacitors.
- Polymer and Rubber:
- Imparts electrical conductivity to plastics, rubbers, and composites for antistatic and electromagnetic interference (EMI) shielding applications.
- Electronics:
- Used in sensors, conductive coatings, and other electronic components.
- Industrial Coatings:
- Provides conductivity to industrial paints and coatings.
- Energy Storage:
- Advantages for Applications:
- High Conductivity:
- Significantly enhances the electrical conductivity of composites and electrode materials.
- Low Loading Requirements:
- Achieves desired conductivity with minimal material usage, reducing costs.
- Improved Performance:
- Boosts electron transport, improving energy density and charge/discharge rates in batteries and supercapacitors.
- Thermal Stability:
- Performs reliably under high temperatures and in chemically aggressive environments.
- High Conductivity:
- Specialized Uses:
- Fuel Cells:
- Used as a catalyst support for platinum or other electrocatalysts in PEM fuel cells and direct methanol fuel cells.
- Advanced Batteries:
- Integral to the development of next-generation battery technologies for electric vehicles and renewable energy storage.
- Research and Development:
- Investigated for novel uses in energy storage and conductive materials.
- Fuel Cells:
Summary:
Vulcan XC72 Conductive Carbon Black is a versatile and high-performance conductive carbon material widely used in energy storage, electronics, and industrial applications. Its excellent conductivity, stability, and compatibility with various materials make it essential for lithium-ion batteries, fuel cells, and conductive composites. With its unique properties, Vulcan XC72 remains a critical additive for enhancing electrical performance across numerous advanced technologies.