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High-performance lithium-rich binder for next-generation aqueous electrode formulations
The Cell Lab Lithium Polyacrylate (PAALi, also known as LiPAA) Binder is a water-based, ion-conductive polymer binder engineered for advanced lithium-ion battery research. It enhances electrode cohesion, improves ionic conductivity, and provides lithium-ion supplementation to offset first-cycle loss. Particularly effective in silicon-graphite composite anodes, this binder improves cycle life and structural integrity compared with traditional PVDF or CMC/SBR systems, offering a sustainable, high-efficiency solution for electrode slurry preparation.
Lithium-Rich Conductive Binder: Supplies active Li⁺ ions and enhances electrode ionic transport for improved charge efficiency.
Superior Adhesion: Strengthens interparticle bonding, minimising electrode delamination and microcracking.
Ideal for Silicon-Graphite Electrodes: Stabilises expansion during cycling, ensuring longer electrode durability.
Eco-Friendly Aqueous Formulation: Non-toxic, water-soluble system enabling safe, sustainable processing.
Ready-to-Use 500 g Solution: 6 % solid content with high viscosity (~24,000 mPa·s), optimised for electrode slurry coating.
| Parameter | Value |
|---|---|
| Product Name | Lithium Polyacrylate PAALi |
| CAS Number | 25656-42-2 |
| Appearance | Pale yellow transparent solution |
| pH | 7.5 |
| Solid Content | 6% |
| Viscosity | 24,000 mPa·s |
| Package Size | 500 g / bottle |
| Storage Condition | Keep sealed at room temperature |
Silicon and silicon-graphite composite anode fabrication
Aqueous electrode slurry preparation
Lithium-ion and solid-state battery research
Binder system evaluation and optimisation studies
Eco-friendly electrode manufacturing processes
Q1: What makes PAALi different from conventional binders?
It is lithium-rich and ionically conductive, providing Li⁺ compensation and stronger electrode bonding.
Q2: Is PAALi suitable for aqueous electrode systems?
Yes. It is fully water-soluble, allowing safe and eco-friendly slurry preparation.
Q3: Can it be used with silicon-dominant anodes?
Absolutely. It effectively mitigates volume expansion and improves mechanical integrity during cycling.
Q4: What is the recommended solid content?
Cell Lab supplies PAALi as a 6 % aqueous solution, ready for direct use or dilution as required.
Q5: How should it be stored?
Keep sealed at room temperature and avoid freezing to maintain polymer stability and viscosity.
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