Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Cabot Vulcan XC72 Carbon Black

Cabot Vulcan XC72 Carbon Black is a high-surface-area conductive carbon black from Cabot’s Vulcan® series. Engineered for battery electrodes and conductive plastics, it delivers exceptional electrical conductivity, dispersion stability, and reinforcement. Its optimized particle size and structure ensure superior performance in lithium-ion batteries, coatings, and polymer composites. Widely trusted for reliability and consistency in demanding industrial applications.
  • cabot vulcan xc72 carbon black_bfe55ec0
  • cabot vulcan xc72 carbon black_bfe55ec0

Features Of Cabot Vulcan XC72 Carbon Black

  1. High surface area (≈250 m²/g) for enhanced conductivity and reinforcement in polymer composites.

  2. Consistent particle size distribution ensures reproducible dispersion and performance in demanding formulations.

  3. Low ash content (<0.5%) minimizes interference in sensitive electrochemical and electronic applications.

  4. Optimized structure for balanced dispersibility and electrical percolation in conductive plastics and coatings.

  5. Commercially established grade with robust supply chain support and global regulatory compliance (REACH, RoHS).

Typical Applications Of Cabot Vulcan XC72 Carbon Black

  1. Conductive masterbatches for antistatic and EMI-shielding thermoplastics.

  2. Electrode components in lithium-ion batteries (cathode conductive additive).

  3. Conductive inks and screen-printed electronics requiring fine-feature resolution.

  4. Static-dissipative flooring compounds and industrial rubber products.

  5. Specialty coatings for corrosion protection with integrated conductivity.

Specifications Of Cabot Vulcan XC72 Carbon Black

Chemical TypeAcetylene black–type furnace carbon black
Product FormPowder (pelletized or free-flowing)
AppearanceBlack granular or dusty powder
Primary ApplicationsConductive additives, battery electrodes, static control compounds
Key FeaturesHigh surface area, low DBP absorption, excellent conductivity onset
BenefitsImproved charge transfer, lower loading requirements, stable rheology in dispersions
Density (Apparent)~0.3–0.4 g/cm³
Moisture Content≤1.0% (as received)


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