For industrial manufacturing and laboratory research purposes only.
Product Specifications
| Parameter | Value |
|---|---|
| Model NO. | 1310-66-3 |
| Classification | Other Oxides |
| Grade Standard | Industrial Grade |
| Quality | First Class |
| Density | 1.51 |
| Storage Condition | Store at Room Temperature |
| Water Solubility | 109 G/L (20 ºC) |
| Solubility | H2O: 1 M at 20 °C, Clear, Colorless |
| Transport Package | 25kg Bag, 450kg Package |
| Specification | provide tailored package on request |
| Trademark | ChemiCal |
| Origin | China |
Low-Impurity Lithium Hydroxide Monohydrate (CAS 1310-66-3) for Consistent New Energy Applications
New energy material production demands precision—yet many suppliers struggle with inconsistent impurity levels that cause electrode degradation or failed battery cycles. In our 10+ years serving battery manufacturers, we’ve seen how even 0.01% excess metal impurities can derail production runs, and how delayed shipments from unreliable suppliers disrupt critical R&D timelines.
A Stable Supply of Low-Impurity Lithium for New Energy Production
Our Lithium Hydroxide Monohydrate (CAS 1310-66-3) addresses these challenges with industry-leading consistency. As a specialized chemical supplier with a dedicated R&D team and advanced laboratories, we’ve optimized our production process to minimize impurities, ensuring each batch meets the strict requirements of new energy applications. Whether you’re scaling up battery production or conducting cutting-edge material research, our low-impurity lithium hydroxide delivers the reliability your operations demand.
Key Applications in New Energy and Industrial Sectors
This high-purity lithium compound serves as a critical raw material in lithium-ion battery cathode production, particularly for high-energy-density batteries used in electric vehicles and energy storage systems. It also finds applications in specialty glass manufacturing, ceramics, and as a catalyst in organic synthesis processes. All uses are strictly limited to industrial manufacturing and laboratory research contexts.
Why Purity and Consistency Matter in Lithium Hydroxide
The low-impurity profile of our Lithium Hydroxide Monohydrate directly impacts product performance: reduced metal contaminants prevent micro-short circuits in battery cells, while consistent particle size distribution ensures uniform mixing during electrode coating. The specified water solubility (109 G/L at 20°C) guarantees reliable dissolution in electrolyte formulations, and the stable density of 1.51 enables accurate volumetric dosing in large-scale production. These parameters aren’t just numbers—they’re the foundation of predictable, repeatable manufacturing processes.
The Value of Reliable Low-Impurity Lithium Sourcing
Choosing substandard lithium hydroxide risks more than product failure; it threatens production efficiency and research validity. Our commitment to first-class quality means fewer production halts, lower waste rates, and research results you can trust. With ISO 9001-certified production facilities and a supply chain built for stability, we deliver New Energy Grade Lithium Hydroxide Monohydrate that balances performance with cost-effectiveness, supporting both small-batch R&D and large-scale manufacturing.
Our Quality Assurance Commitment
Every batch of our Lithium Hydroxide Monohydrate undergoes rigorous testing, including ICP-MS for impurity analysis and Karl Fischer titration for moisture content. We provide a detailed Certificate of Analysis (COA) with each shipment, and our quality control team is available to address specific testing requirements. With production capacity to support long-term contracts and flexible packaging options (from 25kg bags to 450kg packages), we’re equipped to meet the evolving needs of your operation—backed by our guarantee of specification compliance or full replacement.
Certificate of Analysis & Documentation
Each delivery includes a batch-specific COA and MSDS, detailing impurity levels, physical properties, and safety handling information. For critical applications, we can provide additional testing data upon request, including particle size distribution reports and trace element analysis. All documentation is compliant with international shipping and industrial safety standards.
Storage & Handling
- Store in a cool, dry, well-ventilated area, sealed and away from direct sunlight.
- Keep away from incompatible materials, food and feed sources.
- Handle with appropriate personal protective equipment (gloves, goggles, lab coat).
- Follow good industrial hygiene practices. Avoid inhalation and skin contact.
- Refer to MSDS for detailed storage and safety instructions.
Streamlined Order Process for Industrial Buyers
To ensure a smooth procurement experience, we’ve simplified our ordering流程: start with an online inquiry specifying your required quantity and packaging, request a sample for qualification testing, and upon approval, place your order with flexible lead times. We support both standard and customized packaging options, and all shipments include the documentation needed for customs clearance and internal quality checks.
Frequently Asked Questions
Q: What is the shelf life of Lithium Hydroxide Monohydrate when stored properly?
A: When stored in sealed containers at room temperature, the product remains stable for 12 months from the date of manufacture.
Q: Is this product suitable for pharmaceutical or food applications?
A: No. This product is strictly for industrial and laboratory research use only, and not for direct human consumption or therapeutic applications.
Q: What documentation is provided with each shipment?
A: Each order includes a Certificate of Analysis (COA) and Material Safety Data Sheet (MSDS) specific to the batch.
Q: Can you accommodate custom packaging requirements?
A: Yes, we provide tailored package options on request to meet specific handling or storage needs.
Q: How is the purity of your Lithium Hydroxide Monohydrate verified?
A: Purity is confirmed through multiple analytical methods, including ICP-MS for impurity quantification and titration for assay determination, with results documented in the batch COA.



