Technical Specification:
- Material Composition:
- Material: High-purity Lithium (Li).
- Purity: 99.9%, ensuring minimal impurities for consistent and optimal electrochemical properties.
- Physical Dimensions:
- Thickness: 0.5 mm.
- Ideal for balancing material content and handling ease.
- Width: 50 mm.
- Length: 1000 mm.
- Suitable for extended applications or large-scale experiments.
- Thickness: 0.5 mm.
- Physical and Chemical Properties:
- Density: 0.534 g/cm³ (lightweight).
- Melting Point: 180.5°C.
- Reactivity:
- Highly reactive with air, moisture, and nitrogen, necessitating handling in an inert atmosphere.
- Surface Condition:
- Delivered in a clean, oxide-free state, typically vacuum-sealed to maintain purity.
- Thermal and Electrical Properties:
- Thermal Conductivity: 84.7 W/m·K.
- Electrical Conductivity: Excellent, supporting efficient current collection and ion transport.
- Packaging:
- Delivered in vacuum-sealed or argon-filled packaging to prevent oxidation and contamination.
Applications:
- Primary Applications:
- Anode Material:
- Used as an anode in lithium-metal, lithium-ion, and solid-state batteries.
- Reference Electrode:
- Standard material for electrochemical studies.
- Anode Material:
- Industries:
- Battery Research and Development:
- Integral to the prototyping and evaluation of advanced battery technologies.
- Energy Storage Systems (ESS):
- Supports innovations in renewable energy storage solutions and grid applications.
- Aerospace and Defense:
- Utilized in lightweight, high-energy-density batteries for critical applications.
- Battery Research and Development:
- Advantages for Applications:
- High Energy Density:
- Enhances battery capacity and efficiency due to lithium’s high electrochemical potential.
- High Purity:
- Ensures reproducibility and reliability in experimental and production settings.
- Flexible Dimensions:
- Long length allows for tailored configurations in diverse applications.
- High Energy Density:
- Specialized Uses:
- Solid-State Batteries:
- Provides a stable layer for interfacing with solid electrolytes.
- Advanced Cathode Testing:
- Pairs with high-capacity or high-voltage cathodes for cutting-edge research.
- Electrochemical Studies:
- Ideal for studying ion transport, interfacial reactions, and performance under varying conditions.
- Solid-State Batteries:
- Challenges and Mitigation:
- Oxidation and Moisture Sensitivity:
- Reacts with air and water, forming a passivation layer.
- Solution: Handle in a glove box under an inert atmosphere (argon or nitrogen).
- Reacts with air and water, forming a passivation layer.
- Handling Difficulties:
- Soft and prone to deformation.
- Solution: Use precision tools for cutting, shaping, and handling.
- Soft and prone to deformation.
- Storage Concerns:
- Sensitive to heat and light.
- Solution: Store in a vacuum-sealed or argon-filled container at controlled temperatures.
- Sensitive to heat and light.
- Oxidation and Moisture Sensitivity:
Summary:
The Lithium (Li) Foil, with a thickness of 0.5 mm, width of 50 mm, length of 1000 mm, and 99.9% purity, is a versatile and essential material for advanced battery research and electrochemical applications. Its high energy density, excellent conductivity, and flexibility make it indispensable for lithium-metal, lithium-ion, and solid-state battery development. Proper storage and handling in inert conditions are critical to maintaining its performance and integrity.