EDAPLAN® 9011
Americas · Asia/Oceania · EMEA
Product Details
EDAPLAN 9011® is a solvent-free dispersing and wetting agent with an active content of 35%. It is designed for waterborne anode slurries to disperse and stabilize active materials (e.g. graphite, Si/C) and conductive additives (e.g. CB, graphene, CNT, CNS, Ti3C2). EDAPLAN® 9011 reduces the visosity and ensures the stability of the viscosity. It optimizes dispersing/milling efficiency. EDAPLAN® 9011 increases flexibility and reduce cracking of electrode layers.
Resources

Material Safety Data Sheet
194 kB

Technical Data Sheet
50.9 kB

Processing Aids for Electrode Manufacturing
568 kB
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Product Group
- Dispersing Agents
Market
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Target Formulation
- Waterborne Slurry of Active Materials
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Physical Condition
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Type
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Solvent
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35%
Availability
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- VOC free
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- Battery
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Target Formulation
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Physical Condition
- Liquid
Type
- High Molecular Copolymer
Solvent
- Water
Active / Solid content
40%
Availability
- Americas
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Free From
- APE free
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- Dispersing Agents
Market
- Battery
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EEC
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Target Formulation
- Waterborne Slurry of Active Materials
- PVDF Coating Layer
Physical Condition
- Liquid
Type
- High Molecular Copolymer
Solvent
- Water
Active / Solid content
50%
Availability
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Free From
- VOC free
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Product Group
- Dispersing Agents
Market
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Battery
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SPW
Target Formulation
- Waterborne Slurry of Active Materials
- Waterborne Slurry of Conductive Additives
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Physical Condition
- Liquid
Type
- High Molecular Copolymer
Solvent
- Water
Active / Solid content
40%
Availability
- Americas
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Free From
- VOC free
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Product Group
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Market
- Battery
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Target Formulation
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Physical Condition
- Liquid
Type
- High Molecular Copolymer
Solvent
Active / Solid content
100%
Availability
- Americas
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Free From
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Product Group
- Dispersing Agents
Market
- Battery
Battery
SPW
Target Formulation
- NMP-Slurry of Conductive Additives
- Slurry of Active Materials
Physical Condition
- Liquid
Type
- High Molecular Copolymer
Solvent
Active / Solid content
100%
Availability
- Americas
- Asia/Oceania
- EMEA
Free From
- APE free
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EEC
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Improve Electrochemical Stability
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