
KETJENBLACK ECP-600JD Superconductive Carbon Black
SKU: ECP-600JD
KETJENBLACK ECP-600JD Superconductive Carbon Black is a high-structure conductive carbon black with documented 1400 m²/g BET surface area, high DBP absorption and a branched morphology for efficient conductive networks.
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KETJENBLACK ECP-600JD Superconductive Carbon Black
Material Type: Superconductive Carbon Black
Product Code: ECP-600JD
Brand: KETJENBLACK
Product Introduction
ECP-600JD is a high-performance superconductive carbon black with a documented branched morphology and high specific surface area. The supplied information describes efficient contact with active-material particles, formation of a conductive network at relatively low addition and reduced internal resistance in electrode systems.
Core Features
- High-structure superconductive carbon black
- BET surface area of 1400 m²/g
- DBP oil absorption of 495 mL/100 g by the documented 15 g method
- Branched morphology designed to form an efficient conductive network
- Documented low-resistance performance at relatively low addition
- Detailed trace-metal and particle-distribution data
Technical Specifications
| Parameter | Specification |
|---|---|
| Product Code | ECP-600JD |
| Brand | KETJENBLACK |
| Material Type | Superconductive carbon black |
| CAS Number | 1333-86-4 |
| Appearance | Freely flowing black powder |
| DBP Oil Absorption | 495 mL/100 g (15 g method) |
| Iodine Adsorption | 1050 mg/g |
| BET Surface Area | 1400 m²/g |
| Apparent Specific Gravity | 110 g/L |
| pH | 9 |
| Volatile Content | 0.5 wt% |
| Moisture | 0.2 wt% |
| Ash Content | 0.02 wt% |
| Sieve Residue | 10 wt ppm |
| Cobalt Content | ≤1 wt ppm |
| Chromium Content | ≤1 wt ppm |
| Copper Content | ≤1 wt ppm |
| Iron Content | 50 wt ppm |
| Nickel Content | 2 wt ppm |
| Manganese Content | ≤1 wt ppm |
| Vanadium Content | ≤1 wt ppm |
| Sulfur Content | 0.04 wt% |
| Particle Distribution, 200 Mesh | >98% |
| Particle Distribution, 325 Mesh | >80% |
Material Comparison

Applications
- Lithium-battery electrode conductive-additive formulations
- EDLC and supercapacitor electrodes
- Fuel-cell and storage-battery material research
- Conductive-network and internal-resistance optimization
Note: The values are transcribed from the supplied grade-specific references. Confirm the formulation basis, test method and current-lot specifications for the intended application.
Related Products: Browse the Conductive Additives category and Cabot BLACK PEARLS 2000 carbon black.




