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hexafluorophosphate, lithium hexafluoroarsenate, and lithium trifluoromethane sulfonate are key electrolyte salts widely regarded as essential materials for next-generation lithium-ion, primary, and secondary lithium cells.
High Purity Directly Enhances Battery Performance: The electrochemical performance, safety, and reliability of lithium-ion batteries strongly depend on the purity of these electrolyte salts, making them indispensable for high-performance energy storage systems.
Strong and Growing Market Demand: These materials are already produced on a large industrial scale, with hundreds of tons manufactured, and demand is expected to increase significantly to thousands of tons in the near future.
Wide Application Across Multiple Industries: Lithium electrolyte salts are in high demand for automotive batteries, consumer electronics, computers, communication systems, and military applications, reflecting their broad applicability and strategic importance.
Product Application of Lithi terflrrte CAS#14283-07-9
Lithium tetrafluoroborate (LiBF₄), together with lithium hexafluorophosphate (LiPF₆), lithium hexafluoroarsenate (LiAsF₆) and lithium trifluoromethanesulfonate (LiSO₃CF₃), belongs to a new generation of electrolyte salts for modern energy storage systems. The performance of lithium-ion batteries as well as primary and secondary lithium cells relies heavily on the purity of these raw materials. At present, the annual output has already reached several hundred tons, and future market demand is expected to surge sharply to thousands of tons. A major automobile manufacturer forecasts the market demand for such electrolyte salts to be about 10–15 million pounds. Meanwhile, lithium primary cells maintain strong market demand in electronics, computers, communications and military fields.
Product Application of Lithi terflrrte CAS#14283-07-9
Lithium tetrafluoroborate (LiBF₄) is adopted as an electrolyte material for lithium-ion batteries (LIBs). Trace moisture in LiBF₄ will trigger hydrolysis, generate hydrogen fluoride (HF), and further damage battery electrodes. Our LiBF₄ features a water content below 100 ppm, which is well suited for high-reliability and high-performance lithium-ion battery applications.
Parameters
Safety Information
Delivery Time
Inventory 2-3 working days New manufacturing 7-10 working days
Mode of Transportation
1. By Air, fast but expensive.
2. By Sea, usual and economy.
3. By Train, suit for middle Asia countries.
4. By Express, suit for small package.
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Chemical buyers evaluate more than price and delivery time. Clear specifications, matching batch documents, consistent packaging information, and traceable logistics all affect customs clearance, warehouse inspection, and production use.
When selecting a supplier, buyers should review how the company confirms specifications, manages documents, handles changes, and responds to problems. Transparent processes help reduce order risks and improve long-term procurement reliability.
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A product name alone is often insufficient for an accurate quotation. Buyers should provide the product name and CAS number, key specifications or purity, final application, required quantity, packaging requirements, destination, and expected delivery time or preferred Incoterms.
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3. What Are the Differences Between COA, SDS, and TDS?
A COA is a batch-specific Certificate of Analysis showing test items, required ranges, and actual results. It is mainly used for quality verification and incoming inspection.
An SDS provides safety, handling, storage, emergency, and transportation information. A TDS describes typical product properties, technical parameters, and application guidance. Buyers should confirm the required document version, language, and applicable standards before placing an order.
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Before shipment, confirm the product identity, physical form, transport classification, and applicable regulations. An SDS is an important reference, but the final shipping arrangement must also meet regulatory and carrier requirements.
Packaging, sealing, moisture protection, palletizing, labels, ports, documents, Incoterms, and transport schedules should be clearly confirmed. Early verification helps prevent delays caused by carrier restrictions or incomplete documentation.
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Sample evaluation should consider both product compliance and application performance. Laboratory results do not always guarantee the same performance in every formulation or production process.
Before testing, record the sample batch, COA, storage condition, and sampling method. During application tests, keep consistent records of formulation, dosage, process conditions, and results. After approval, reconfirm the formal order specifications, inspection method, packaging, and batch documents.
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