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Kuraray Activated Carbon (YP-50F, 1850 m2/g) for Supercapacitor, 50 g/bottle, CSKACYP50F

Kuraray Activated Carbon (YP-50F, 1850 m2/g) for Supercapacitor, 50 g/bottle, CSKACYP50F

$59.00 USD
In Stock SKU: CSKACYP50F
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YP-50F is a high-purity, coconut shell-based activated carbon produced by Kuraray Co., Ltd. (Japan). It is widely regarded as the global industry standard for electrodes in Electric Double-Layer Capacitors (EDLCs) due to its extremely stable quality and balanced pore structure. The key advantages of YP-50F are shown below: 

(1) High Ion Selectivity: The pore size distribution is optimized for the adsorption of common electrolyte ions like TEA^+ and BF4^-. (2) Low Internal Resistance (ESR): Its high purity and consistent particle size allow for low ohmic resistance, enabling high power density and fast charge/discharge rates. (3) Long Cycle Life: Due to its low ash and metallic impurity levels, it minimizes parasitic chemical reactions, often exceeding $1,000,000$ cycles in commercial cells. (4) Stability: It maintains high capacitance retention even under high-voltage floating conditions or extreme temperatures.

The recipe to prepare electrode slurry for reference:

Active Material: 80– 90% YP-50F

Conductive Carbon: 5–10% (e.g., Super P or Ketjenblack)

Binder: 5–10% (e.g., PTFE for dry-pressing or PVDF for slurry coating)

Solvent: NMP (for PVDF) or Ethanol/Isopropanol (for PTFE)

Part Number

CSKACYP50F (C-S-KAC-YP50F)

Raw Material
Coconut Shell
Specific Surface Area
1500-1850 m2/g
Pore Volume

0.6-0.8 mL/g

Average Pore Diameter

~0.8-0.9 nm (primarily microporous)

Particle Size (D50)

5.0-8.0 um

Specific Capacitance

>140 F/g (aqueous electrolyte)

>28 F/g (organic electrolyte)

Ash Content

7-10

Impurity

Fe<30 ppm,   Cl-<40 ppm     

Humidity Level

<0.3 %

Metal Impurity 

< 20 ppm

Package Size 50 g/bottle

 

Notes: Please try to store the activated carbon YP-50F powder in a dry place (glovebox is the best option). 

References

  1. Y. Ding, et al. Effect of Pore Structure on the Low-Temperature Performance of Activated Carbon-Based Supercapacitors, ACS Appl. Energy Mater. 2024, 7, 12, 5292–5299.
  2. K. Y. Lee, et al. Effect of impurities in different activated carbon materials and their in-depth electrochemical analysis in supercapacitor coin-cell devices with organic electrolyte, J. Mater. Chem. A, 2025,13, 14262-14279

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