Overview
Magnesium fluoride (MgF2) substrates are synthetic crystalline materials prized for their broad spectral transmission range and durability. They are manufactured through vacuum deposition or crystal growth methods, with precise polishing to achieve optical-grade surfaces. As a birefringent material, MgF2 is anisotropic, requiring careful orientation in polarization-sensitive applications. Primarily used in high-performance optics, these substrates serve as base materials for anti-reflective coatings, beam splitters, and excimer laser components. Their chemical inertness and thermal stability make them suitable for harsh environments, including aerospace and defense systems.
Physical and Chemical Properties
MgF2 exhibits exceptional optical characteristics, transmitting light from 120 nm (deep UV) to 7 μm (mid-infrared), outperforming common fused silica. Its low refractive index reduces surface reflections, while a Mohs hardness of 5–6 ensures scratch resistance. The material’s thermal expansion coefficient (13.7×10⁻⁶/°C) allows compatibility with glass components. Chemically, MgF2 is stable against moisture and most acids, though prolonged exposure to strong alkalis may cause etching. Its cubic crystal structure (rutile type) contributes to mechanical robustness, with a Young’s modulus of 138 GPa. These properties are maintained up to 400°C, beyond which gradual decomposition occurs.
Main Applications
In UV lithography systems, MgF2 substrates are essential for 193 nm and 157 nm laser optics due to minimal absorption. They function as output couplers in ArF/Excimer lasers and windows in space telescopes for solar-blind UV detection. Mid-IR applications include thermal imaging lenses and CO₂ laser components. The telecom industry utilizes MgF2 for fiber-optic isolators and polarizers, leveraging its birefringence. Anti-reflective coatings vapor-deposited on camera lenses and solar panels often use MgF2 as the outermost layer. Emerging uses include quantum optics and vacuum UV spectroscopy, where material purity (>99.99%) is critical.
Safety and Storage
While non-hazardous per OSHA standards, MgF2 powder requires dust control measures during machining to prevent respiratory irritation. Processed substrates should be stored in anti-static bags within controlled humidity (<40% RH) to avoid moisture absorption or surface contamination. Cleaning mandates solvent-grade isopropanol and lint-free wipes; abrasive cleaners will damage optical surfaces. For high-power laser applications, subsurface defects must be minimized through certified polishing to prevent localized heating and cracking. Disposal follows standard ceramic waste protocols.
B2B Procurement Guide
Industrial buyers should verify MIL-F-48616 or ISO 10110-7 compliance for coating adhesion and surface flatness (λ/10 typical). Custom sizes beyond stock dimensions (e.g., 25.4 mm standard) incur 20–30% cost premiums. Lead times range from 2 weeks for off-the-shelf items to 8 weeks for coated variants. Key suppliers include II-VI Incorporated, Edmund Optics, and Thorlabs, with Chinese manufacturers offering cost-competitive alternatives at 30–50% lower prices. MOQ usually starts at 5–10 pieces for standard specs. Request certificates for refractive index homogeneity (<5×10⁻⁶) and laser-induced damage threshold (≥5 J/cm² at 1064 nm, 10 ns pulses).
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