Description
100 grams/35 €
250 grams/50 €
500 grams/90 €
1000 grams/165 €
Please contact us for quotes on larger quantities !!!
C-NERGY SUPER C65 Conductive Carbon Black
C-NERGY™ SUPER C65 is a premium-grade conductive carbon black designed as a high-efficiency performance additive for state-of-the-art electrochemical systems. Manufactured through a proprietary production process, this ultra-high purity material features a unique combination of high structure and low surface area, guaranteeing exceptional distribution and homogeneity within matrix slurries. Its highly graphitic nature ensures outstanding system stability, low moisture pick-up, and minimized chemical degradation. By meeting the most stringent cleanliness and low metal contamination requirements, it ensures long-term process reliability and excellent functional safety in demanding electronic configurations.
Technical Properties
| Absorption Stiffness Value | 32 ml/5g |
| BET Surface Area | 62 m²/g |
| Volatile Content | Max. 0.15% |
| Ash Content | Max. 0.025% |
| pH | 10 |
| CAS No | 1333-86-4 |
Applications
- Lithium-Ion Battery Electrodes: Utilized as a premium conductive additive in both cathode and anode formulations to establish a robust electrical network at low loading levels, drastically enhancing electronic conductivity.
- Electrode Slurry Processing: Due to its unique structure and low surface area, it provides exceptional dispersion and distribution qualities in electrode slurries, preventing particle agglomeration during manufacturing.
- Energy Storage Open Circuit Voltage (OCV) Control: Applied to actively reduce the open circuit voltage rejection rate during cell production, improving the long-term safety and efficiency of energy storage devices.
- Conductive Plastics and Composites: Serves as a high-purity electrical modifier in advanced polymer matrices to introduce antistatic, static-dissipative, or conductive capabilities without altering mechanical matrix properties.
- Advanced Supercapacitors: Integrated into premium capacitor formulations to facilitate rapid charge carrier mobility and maximize power density through an optimized internal carbon lattice.