Lithium Vanadate (LiVO₃) is an inorganic compound with unique electrochemical and optical properties. It is commonly explored for applications in energy storage, such as lithium-ion batteries and supercapacitors, due to its ability to intercalate lithium ions. Additionally, lithium vanadate can be used in optical materials and catalysis because of its stable structure and ion-conducting abilities.
Formula: LiVO₃.
Appearance: Usually a pale yellow to light green powder or crystalline solid.
Density: Approximately 3.0 g/cm³.
Structure: It typically crystallizes in a monoclinic structure, with a layered configuration that facilitates lithium-ion movement.
Thermal Stability: Stable at high temperatures, maintaining its structure under heating, which is valuable in applications involving high thermal demands.
Electrical Conductivity: It exhibits moderate ionic conductivity, contributing to efficient lithium-ion transport in battery applications.
Lithium-Ion Batteries: LiVO₃ serves as an electrode material, especially in lithium-ion batteries, where it enables reversible lithium-ion intercalation. This makes it suitable for cathode materials, potentially enhancing battery capacity and cycle life.
Supercapacitors: Its high surface area and electrochemical stability make it suitable for use in supercapacitors, where it contributes to high energy and power densities.
Optical and Electrochemical Devices: Its ion conductivity and stable structure make lithium vanadate applicable in various electrochemical devices and optical materials.
Catalysis: It has been investigated for catalytic properties in oxidative reactions, particularly in organic synthesis and environmental applications, where it acts as an oxidizing agent.
Handling: Lithium vanadate should be handled with care, especially in powdered form, as vanadium compounds can be toxic if inhaled.
Storage: Store in a dry, stable environment to avoid moisture absorption and degradation of material properties.
VI HALBLEITERMATERIAL GmbH (VIMATERIAL) employs a stringent quality assurance system to ensure the reliability of our product quality. Strict quality control is implemented throughout the entire production chain, and for defective products, we strictly enforce the principle of rework and redo. Each batch is released only after passing detailed specification tests.
Every batch of our materials is independently tested, and, if necessary, we send samples to certified companies for testing. We provide these documents and analysis certificates with the shipment to certify that our products meet the required standards.
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