High-Quality Potassium Silicate, Sodium Silicate, Lithium Silicate for Global Markets
PRODUCT PARAMETERS
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.

(Lithium Phosphorus Sulfur Chloride LPSCl Li6PS5Cl Solid State Electrolyte Powder For Li Ion Battery)
Specifications of Lithium Phosphorus Sulfur Chloride LPSCl Li6PS5Cl Solid State Electrolyte Powder For Li Ion Battery
This LPSCl powder is lithium phosphorus sulfur chloride. It’s Li6PS5Cl solid electrolyte. This material works for solid state batteries. Solid electrolytes replace liquid electrolytes. They offer big advantages. Safety improves first. No flammable liquids mean less fire risk. Next, stability increases. Lithium metal anodes pair well with LPSCl. Dendrite growth is suppressed. Dendrites cause shorts in liquid systems. Performance gets better too. Ionic conductivity is key here. LPSCl conducts lithium ions well. Its conductivity reaches 10^-3 S/cm levels. That’s high for sulfide electrolytes. The powder is easy to process. It can be cold pressed or sintered. Particle size matters for density. We control particle size distribution tightly. Small particles pack densely. Good contact between particles is vital. This ensures low interfacial resistance. Purity is critical. Impurities hurt performance. Our powder has high chemical purity. Trace metals are minimized. Moisture sensitivity exists. LPSCl reacts with water. Handling requires a dry environment. We package it under argon gas. This keeps the powder stable. Storage conditions must be dry. Use it in glove boxes. Applications target next-gen batteries. Solid state batteries need materials like this. LPSCl enables safer, denser energy storage. Electric vehicles benefit greatly. Longer range becomes possible. Consumer electronics see gains too. Longer battery life is achievable. Faster charging rates become safer.

(Lithium Phosphorus Sulfur Chloride LPSCl Li6PS5Cl Solid State Electrolyte Powder For Li Ion Battery)
Applications of Lithium Phosphorus Sulfur Chloride LPSCl Li6PS5Cl Solid State Electrolyte Powder For Li Ion Battery
LPSCl powder is a solid electrolyte for lithium-ion batteries. It replaces liquid electrolytes. Liquid electrolytes can leak or catch fire. Solid electrolytes like LPSCl are safer. They don’t have these risks. LPSCl powder enables lithium metal anodes. Lithium metal anodes offer high energy density. This means batteries can store more energy. LPSCl conducts lithium ions well. This allows good battery performance. It supports fast charging and discharging. The powder form is important. It can be processed easily. Manufacturers can integrate it into existing production lines. This makes scaling up possible. LPSCl is a sulfide-based solid electrolyte. It shows good compatibility with electrode materials. This reduces unwanted reactions inside the battery. The material helps build stable interfaces. Stable interfaces are crucial for long battery life. Batteries using LPSCl can last longer. They can withstand more charge and discharge cycles. This powder is key for next-generation batteries. These batteries are safer and more powerful. Industries need reliable energy storage. LPSCl powder helps meet this demand. Electric vehicles benefit from such technology. So do portable electronics and grid storage. The powder offers a practical solution. It moves solid-state batteries closer to mass production. Researchers continue to improve LPSCl formulations. They aim for even better ionic conductivity. They also work on cost-effective production methods. Wider adoption depends on these advancements.
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.
5 FAQs of Lithium Phosphorus Sulfur Chloride LPSCl Li6PS5Cl Solid State Electrolyte Powder For Li Ion Battery
What is LPSCl powder?
LPSCl powder is short for Lithium Phosphorus Sulfur Chloride. Its chemical name is Li6PS5Cl. This is a special solid material. It acts as the electrolyte inside lithium-ion batteries. Unlike liquid electrolytes, this powder is solid. It carries lithium ions between the battery’s electrodes. This enables the battery to charge and discharge.
Why use LPSCl instead of liquid electrolytes?
LPSCl powder offers key advantages. Liquid electrolytes can leak or catch fire. Solid electrolytes like LPSCl are safer. They stop leaks. They also reduce fire risk. LPSCl powder allows batteries to use lithium metal anodes. Lithium metal anodes store more energy. This leads to batteries with longer life and higher power. Solid-state batteries are the future.
How well does LPSCl conduct electricity?
LPSCl powder conducts lithium ions effectively. Its ionic conductivity is good. It typically ranges from 1 to 3 millisiemens per centimeter (mS/cm). This conductivity level is high for a solid electrolyte. It supports efficient battery operation. This means batteries can charge faster. They can also deliver power smoothly.
Can LPSCl work with different battery materials?
Yes, LPSCl powder has good compatibility. It works well with lithium metal anodes. It is stable against lithium metal. This stability helps prevent unwanted side reactions. It also works with common cathode materials used today. These include materials like NMC or LFP. This makes LPSCl powder versatile for battery design.
Is LPSCl powder safe?
Safety is a major benefit of LPSCl. Solid electrolytes like LPSCl are inherently safer than liquids. They do not leak. They are much less likely to catch fire if the battery is damaged. They also help stop the growth of lithium dendrites. Dendrites can cause short circuits. Using LPSCl powder makes batteries safer overall.

(Lithium Phosphorus Sulfur Chloride LPSCl Li6PS5Cl Solid State Electrolyte Powder For Li Ion Battery)
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