Lithium Bis-trifluoromethanesulfonimide LITFSI Lithium Salt Powder for Lithium Ion Battery Electrolyte Materials

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Description

Overview of Lithium Silicate

Lithium silicate is a compound used primarily in construction and industrial applications for its unique properties. It is often applied as a hardening and densifying agent for concrete surfaces, enhancing durability and resistance to wear and chemicals.

Features of Lithium Silicate

Hardening and Densifying: Enhances the surface hardness and density of concrete, improving wear resistance.

Chemical Resistance: Provides superior resistance to chemical attacks, making treated surfaces more durable.

Efflorescence Control: Reduces the occurrence of efflorescence on concrete surfaces.

Quick Reaction Time: Reacts quickly with concrete components, speeding up the curing process.

Low Viscosity: Easily penetrates concrete surfaces, ensuring deep sealing and protection.

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Lithium Bis-trifluoromethanesulfonimide LITFSI Lithium Salt Powder for Lithium Ion Battery Electrolyte Materials

Specifications of Lithium Bis-trifluoromethanesulfonimide LITFSI Lithium Salt Powder for Lithium Ion Battery Electrolyte Materials

Specifications of Lithium Bis( trifluoromethanesulfonimide) (LiTFSI) Powder

Item Introduction

Lithium bis( trifluoromethanesulfonimide), frequently known as LiTFSI, is a high-performance lithium salt utilized in sophisticated lithium-ion battery electrolytes. This white to off-white crystalline powder offers outstanding thermal stability and high ionic conductivity, making it optimal for requiring electrochemical applications.

Secret Residences

Chemical Solution: C2F6LiNO4S2
Molecular Weight: 287.08 g/mol
Pureness: ≥ 99.0% (by HPLC).
Look: White to off-white free-flowing powder.
Water Material: ≤ 20 ppm (Karl Fischer titration).
Lithium Content: 2.35– 2.45%.

Performance Advantages

LiTFSI dissolves easily alike organic solvents such as EC, DMC, and DOL. It forms secure electrolyte services that sustain long cycle life and regular efficiency throughout a wide temperature variety. The anion structure resists oxidation, which helps preserve battery safety and efficiency at high voltages.

This lithium salt also shows low corrosivity toward aluminum present collectors contrasted to other salts like LiPF6. That makes it suitable for usage in high-voltage cathode systems, including NMC and LFP chemistries.

Handling and Storage space

Store LiTFSI powder in a trendy, dry place under inert environment (argon or nitrogen). Keep containers firmly secured to avoid dampness absorption. Usage proper personal protective devices during handling, including handwear covers and safety and security goggles. Prevent contact with water or damp air, as trace dampness can affect efficiency.

Applications

LiTFSI is extensively used in lithium steel batteries, solid-state batteries, and lithium-sulfur systems. It is likewise a crucial part in electrolyte formulations for electrical cars, energy storage space systems, and mobile electronic devices where integrity and safety are important.

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Lithium Bis-trifluoromethanesulfonimide LITFSI Lithium Salt Powder for Lithium Ion Battery Electrolyte Materials

Applications of Lithium Bis-trifluoromethanesulfonimide LITFSI Lithium Salt Powder for Lithium Ion Battery Electrolyte Materials

Applications of Lithium Bis(trifluoromethanesulfonyl)imide (LiTFSI) in Lithium-Ion Battery Electrolytes

High-Performance Electrolyte Additive

Lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) is a key lithium salt utilized to make advanced electrolytes for lithium-ion batteries. It dissolves easily alike natural solvents. This offers the electrolyte solid ionic conductivity, which aids batteries charge and discharge much faster.

Stable at High Voltages

LiTFSI maintains its structure secure even when battery voltage exceeds 4.5 volts. Several standard salts damage down under such conditions. LiTFSI does not. This makes it excellent for use in high-voltage cathode products like nickel-rich NMC or lithium cobalt oxide. Batteries making use of LiTFSI can keep much more energy without shedding performance with time.

Better Low-Temperature Operation

Batteries with LiTFSI work well in cold weather. The salt lowers the freezing factor of the electrolyte. It additionally keeps excellent ion movement at reduced temperatures. This is essential for electrical automobiles and exterior electronic devices that have to work in winter conditions.

Compatibility with Solid-State Solutions

LiTFSI is usually used in quasi-solid and solid-state electrolytes. It works well with polymer matrices like PEO (polyethylene oxide). The salt improves lithium-ion transport throughout the strong interface. This supports much safer battery styles with decreased risk of leak or fire.

Longer Cycle Life

Cells constructed with LiTFSI show much less deterioration during duplicated billing cycles. The anion in LiTFSI creates a steady protective layer on the anode surface. This layer prevents undesirable side responses. As a result, the battery lasts longer and holds its capacity much better in time.

Manufacturers select LiTFSI when they need reputable, high-efficiency electrolytes for next-generation lithium-ion batteries. Its special balance of conductivity, security, and safety makes it a leading selection throughout multiple sophisticated battery systems.

Company Introduction

Welcome to Iberocruceros, a leading supplier in the international market for high-quality potassium silicate, sodium silicate, and lithium silicate.

Our products are meticulously crafted to meet the diverse needs of various industries, including construction, agriculture, and manufacturing. With state-of-the-art production facilities and a commitment to excellence, we ensure superior product quality and customer satisfaction.

We pride ourselves on our innovative solutions, competitive pricing, and reliable delivery services. Partner with us for your silicate needs and experience the difference that expertise and dedication can make. Let’s build a sustainable future together.

If you have any questions, please feel free to contact us(nanotrun@yahoo.com).

Payment Methods

T/T, Western Union, Paypal, Credit Card etc.

Shipment Methods

By air, by sea, by express, as customers request.

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Lithium Bis-trifluoromethanesulfonimide LITFSI Lithium Salt Powder for Lithium Ion Battery Electrolyte Materials

5 FAQs of Lithium Bis-trifluoromethanesulfonimide LITFSI Lithium Salt Powder for Lithium Ion Battery Electrolyte Materials

Frequently Asked Questions About Lithium Bis(trifluoromethanesulfonimide) (LiTFSI)

What is LiTFSI used for?

LiTFSI is a lithium salt used in electrolytes for lithium-ion batteries. It helps ions move between the battery’s electrodes. This improves battery performance, especially at high or low temperatures.

Why choose LiTFSI over other lithium salts?

LiTFSI has high thermal stability and good solubility in common solvents. It also offers better conductivity than many alternatives. These traits make it ideal for demanding applications like electric vehicles and energy storage systems.

Is LiTFSI safe to handle?

LiTFSI is stable under normal conditions but should be handled with care. Always wear gloves and eye protection. Keep it away from moisture and store it in a dry, cool place. Follow standard lab safety practices when working with this material.

How pure is your LiTFSI powder?

Our LiTFSI powder meets high-purity standards, typically ≥99.0%. We test every batch for impurities like water, metals, and halides. This ensures consistent performance in battery electrolytes.

Can LiTFSI corrode aluminum current collectors?

Yes, LiTFSI may cause corrosion of aluminum at high voltages. To prevent this, manufacturers often add corrosion inhibitors to the electrolyte. Alternatively, they use protective coatings on the current collector. Proper formulation minimizes this risk while keeping the benefits of LiTFSI.

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