Conductive – C-NERGY™ SUPER C45 Carbon Black

Original price was: $180.00.Current price is: $160.00.

Product Name: TIMCAL SUPER C45 Carbon Black Conductive Additive for Battery Cathode and Anode

CAS Number: 1333-86-4

Quantity
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100g per bag

SPECIFICATIONS of SUPER C45 Carbon Black

Volatile Content 0.4 % max
Toluene Extract 0.2% max
Ash content (600°C) 0.025% max
Grit content > 45 microns / 325 mesh <2 ppm
Grit content > 20 microns / 625 mesh 12 ppm
BET specific surface area (SSA) 45 m2/g
Particle Size 100~200 nm
Adsorption stiffness value 36 ml/5g
Moisture 0.1%
Density 160 kg/m3
Sulfur Content 0.02%
pH 7
Iron (Fe) 2 ppm
Nickel (Ni) 1 ppm
Vanadium (V) < 1 ppm
Chromium (Cr) < 1 ppm
Copper (Cu) < 1 ppm
Package Packaged in an air-tight container sealed in an aluminum vacuum bag

*Please bake the powder in a vacuum oven at 120 – 150 °C before making slurry and coating to ensure max. capacity

(1) Weight loss during heating between 105 and 950°C
(2) Water with 10% aceton on 5 g carbon
(3) Induced Coupled Plasma Measurement

 

The C-NERGY SUPER C45 is a high-performance conductive carbon black powder made by IMERYS. SUPER C45 was introduced by IMERYS as an improved version of the SUPER P carbon black. SUPER C45 is an ultra-high purity product that has been used as a conductive additive in lithium-ion battery electrodes (cathode and anode) to improve the battery performance.

Advantages:

a. The lowest Fe impurity level (1 ppm)

b. High specific surface area (45 m2/g)

c. Superior battery performance

The Imerys C-NERGY SUPER C45 carbon black meets the highest purity requirements for low metallic impurities and grit. The primary purpose of use of these SUPER C45 carbon black is to provide electrical conductivity to lithium-ion battery electrodes at low to very low loading.

Application Benefits:

  • Increased battery safety
  • Lower rejection ratio
  • Fully compatible with most electrolyte systems
  • No additional pre-dispersing is needed
  • No dispersing aid is needed
  • Very high loading is possible
  • Cost savings on NMP and faster drying time
  • High energy density
  • Improved power density
  • Cost reduction thanks to lower dosage needed
  • Improved flexibility of the electrode