Lithium Cobalt Phosphate (LiCoPO4) Sputtering Target is a specialized target used for thin-film deposition of LiCoPO₄ via sputtering, a process commonly applied in the fabrication of thin-film batteries and electronic devices. LiCoPO₄, known for its high-voltage performance, has a promising role in energy storage applications due to its unique electrochemical properties, which can be effectively harnessed through thin-film deposition.
Appearance: Usually gray to dark purple, depending on manufacturing methods, with a solid, dense form suitable for sputtering.
Density: Approximately 3.6 g/cm³.
Target Size: Available in standard diameters (e.g., 2 inches, 4 inches) and custom sizes depending on application requirements. Typical thickness varies based on the specific sputtering setup.
Deposition Rate: Deposition rates for LiCoPO4 are influenced by sputtering parameters such as power, pressure, and target composition. Rates are typically optimized to achieve uniform thin films.
Film Composition Control: LiCoPO₄ films created from sputtering targets maintain stoichiometry for uniform performance in battery applications.
Conductivity: LiCoPO4 is inherently low in conductivity, so deposition processes may involve conductive additives or substrate treatments to achieve desired electrical performance.
Thin-Film Batteries: LiCoPO4 thin films are used in thin-film lithium-ion batteries for high-energy applications, such as microelectronics and portable energy devices. Its high voltage (around 4.8V) allows for potentially higher energy densities than other cathode materials.
Microelectronics: Due to its stability and high energy density, LiCoPO4 is suited for use in power supplies for microelectronic devices.
Research and Development: Used in studies focused on high-voltage cathode materials, enabling investigation into the stability, compatibility with electrolytes, and potential for next-generation battery technologies.
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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