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Hard Carbon Type-2 for Sodium-Ion Battery Anodes

Hard Carbon Type-2 for Sodium-Ion Battery Anodes

MOQ: 20g
Price: Negotiable
Standard Packaging: Plastic package
Delivery Period: 5-7 days
Payment Method: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Capacity: 1kg/month
Detail Information
Place of Origin
CHINA
Brand Name
XWELL
Model Number
Type-2
Material Name:
Hard Carbon Type-2
Initial Discharge Capacity (Na/Na⁺):
≥300mAh/g
Initial Discharge Efficiency:
≥90%
Cycle Performance:
Capacity Retention Rate Of 95.7% After 250 Cycles
Rate Performance:
232.0mAh/g At 10C Rate
Low - Temperature Performance:
Available For Normal Charge - Discharge At -20℃
Product Description

Hard Carbon Type-2 for Sodium-Ion Battery Anodes

1. Basic Information


Item Details
Product Name Kuraray Hard Carbon Type - 2
Application Anode material for sodium - ion batteries (SIBs)
Raw Material Eco - friendly natural plant - based precursors
Form Powder
Package Specification 200g per bottle; kilogram - scale packaging is available upon request
Storage Requirement To prevent moisture absorption, the product should be stored in a vacuum box under dry conditions


Physical Properties

Parameter Value Description
Average Particle Size (D₅₀) 5μm / 9μm Two specifications are available. The 5μm and 9μm grades meet different processing and battery performance requirements.
Specific Surface Area (SSA) 4m²/g (for 9μm grade); 6.0m²/g (for 5μm grade) The moderate specific surface area helps balance the formation of the solid electrolyte interphase (SEI) film and the rate of sodium - ion adsorption.
True Density 1.48g/cm³ Ensures good compactibility when preparing anode electrodes, which is conducive to improving the energy density of batteries.
Average Interlayer Spacing (d₀₀₂) 0.38nm Wider than that of graphite, this spacing significantly enhances the diffusibility of sodium ions and optimizes the charge - discharge response speed of the battery.
Moisture Resistance Low It can be compatible with water - based binders such as SBR/CMC, reducing the environmental impact and cost of electrode preparation processes

Hard Carbon Type-2 for Sodium-Ion Battery Anodes 0


Products
PRODUCTS DETAILS
Hard Carbon Type-2 for Sodium-Ion Battery Anodes
MOQ: 20g
Price: Negotiable
Standard Packaging: Plastic package
Delivery Period: 5-7 days
Payment Method: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Capacity: 1kg/month
Detail Information
Place of Origin
CHINA
Brand Name
XWELL
Model Number
Type-2
Material Name:
Hard Carbon Type-2
Initial Discharge Capacity (Na/Na⁺):
≥300mAh/g
Initial Discharge Efficiency:
≥90%
Cycle Performance:
Capacity Retention Rate Of 95.7% After 250 Cycles
Rate Performance:
232.0mAh/g At 10C Rate
Low - Temperature Performance:
Available For Normal Charge - Discharge At -20℃
Minimum Order Quantity:
20g
Price:
Negotiable
Packaging Details:
Plastic package
Delivery Time:
5-7 days
Payment Terms:
L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability:
1kg/month
Product Description

Hard Carbon Type-2 for Sodium-Ion Battery Anodes

1. Basic Information


Item Details
Product Name Kuraray Hard Carbon Type - 2
Application Anode material for sodium - ion batteries (SIBs)
Raw Material Eco - friendly natural plant - based precursors
Form Powder
Package Specification 200g per bottle; kilogram - scale packaging is available upon request
Storage Requirement To prevent moisture absorption, the product should be stored in a vacuum box under dry conditions


Physical Properties

Parameter Value Description
Average Particle Size (D₅₀) 5μm / 9μm Two specifications are available. The 5μm and 9μm grades meet different processing and battery performance requirements.
Specific Surface Area (SSA) 4m²/g (for 9μm grade); 6.0m²/g (for 5μm grade) The moderate specific surface area helps balance the formation of the solid electrolyte interphase (SEI) film and the rate of sodium - ion adsorption.
True Density 1.48g/cm³ Ensures good compactibility when preparing anode electrodes, which is conducive to improving the energy density of batteries.
Average Interlayer Spacing (d₀₀₂) 0.38nm Wider than that of graphite, this spacing significantly enhances the diffusibility of sodium ions and optimizes the charge - discharge response speed of the battery.
Moisture Resistance Low It can be compatible with water - based binders such as SBR/CMC, reducing the environmental impact and cost of electrode preparation processes

Hard Carbon Type-2 for Sodium-Ion Battery Anodes 0


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