Images are for guidance only and might not represent the final product.

Platinum/Iridium Alloy Foil (Pt80/Ir20)

Available Configurations

Properties common to all products in this list

Commodity: Precious Metals Material: Platinum/Iridium Form: Foil/Film/Sheet Composition: Pt 80/Ir 20
Thickness Sides Temper ⓘ Other Variant
0.005mm to 2mm 10mm to 150mm As Rolled Light Tight

Need custom configurations? Please contact us.

Platinum/Iridium Alloy Foil (Pt80/Ir20) is the higher-iridium variant of the Pt/Ir foil series, offering a step up in hardness, strength, and wear resistance compared to Pt90/Ir10 while retaining the chemical inertness and high-temperature stability that define the platinum group metals. The doubled iridium content pushes Vickers hardness to 190–200 and tensile strength to 680–700 MPa — considerably harder and stronger than the 10% iridium grade — with an elastic modulus of 198 GPa and a melting range extending above 1830 °C. The density of 21.7 g/cm³ and low coefficient of thermal expansion of 8.3 × 10⁻⁶ K⁻¹ support excellent dimensional stability across wide temperature ranges, making it well suited to precision components where creep, deformation, or surface degradation under load would be problematic. Available in thicknesses from 0.005 mm down to ultra-thin foil, up to 2.0 mm, and in sheet sizes from 5 × 5 mm to 125 × 150 mm in the as-rolled condition, it covers a wide range of fabrication requirements. Typical applications include high-wear electrical contacts, precision photolithography masks, fuel cell catalyst layers, hard electrode substrates in electrochemistry, and thermal barrier components in demanding environments. In research, it is used wherever the Pt90/Ir10 grade's hardness and wear resistance fall short — particularly in tribological studies, high-cycle electrode applications, and microelectronic device fabrication.
Starting at $403.00 each
No Minimum order Free technical support *Free delivery worldwide

Key Features

Platinum/Iridium alloy foil combines the noble metal properties of platinum with the mechanical reinforcement of iridium, producing a material suited to the most demanding precision, biomedical, and high-temperature applications:

Superior Hardness & Wear Resistance

Iridium addition significantly increases hardness and wear resistance over pure platinum. The Pt70/Ir30 grade reaches 280–285 HV, making it suitable for high-cycle electrode applications, tribological studies, and precision contacts where dimensional stability under repeated mechanical stress is critical.

Exceptional Corrosion & Chemical Resistance

The alloy resists attack from strong acids, alkalis, and oxidising environments across a wide temperature range. Both platinum and iridium are noble metals, and their combination maintains chemical inertness in harsh electrochemical, biological, and industrial process environments.

High-Temperature Stability

Melting points range from 1,800 °C (Pt90/Ir10) to 2,153 °C (Pt70/Ir30), and mechanical integrity is retained at elevated temperatures. This makes the alloy suitable for high-temperature thermocouples, aerospace sensors, and furnace components where thermal cycling would degrade less refractory materials.

Biocompatibility

Platinum/iridium alloys are bioinert and non-toxic, making foil forms suitable for implantable electrode substrates, neurosurgical devices, and biomedical sensor components where long-term contact with biological tissue is required without adverse immune response.

Tuneable Mechanical Properties Across Grades

The three iridium contents — 10%, 20%, and 30% — offer a progressive trade-off between ductility and strength. The Pt90/Ir10 grade offers the greatest formability and widest size range; the Pt70/Ir30 grade delivers maximum hardness and tensile strength (980–1,100 MPa) at the cost of reduced workability.

Pinhole-Free Format (Light-tight Variants)

The light-tight foil variants are tested and certified to be entirely free of pinholes, ensuring complete blockage of light transmission. This makes them suitable for optical masking, photolithography shielding, photonic device isolation, and enclosures for light-sensitive experiments where any optical leakage would compromise results.

Industrial Applications

Platinum/iridium alloy foil is used across advanced scientific, medical, and industrial sectors for its unique combination of hardness, chemical inertness, and high-temperature stability:

Biomedical & Neurosurgical Electrodes
Used as substrate and contact material in implantable neural electrodes, deep brain stimulation devices, and cochlear implants, where biocompatibility, corrosion resistance, and long-term dimensional stability under physiological conditions are essential.
Aerospace & High-Temperature Sensors
Employed in thermocouples, pressure sensors, and electrical contacts for jet engines and spacecraft, where the alloy's thermal stability, low creep, and resistance to oxidation at elevated temperatures are required over extended service lives.
Precision Electrochemical Electrodes
Applied as working and counter electrodes in voltammetry, impedance spectroscopy, and fuel cell catalyst evaluation, where the alloy's inertness and resistance to electrochemical degradation ensure consistent, long-term measurement accuracy.
Optical Masking & Photonic Shielding (Light Tight variants)
Used in photolithography masks, optical sensor housings, spectrometer shielding, and enclosures for light-sensitive experiments, where the pinhole-free structure ensures total light exclusion without compromising the alloy's mechanical or chemical performance.
Microfabrication & Precision Components
Machined, laser-cut, or formed into precision substrates, contact pads, and thin-film layers for MEMS devices, semiconductor processing equipment, and high-wear tribological components that demand both dimensional accuracy and long service life.

Synonyms

Pt80/Ir20 Alloy Foil Platinum Iridium 80/20 Foil PtIr20 Foil Platinum-Iridium Electrode Foil PtIr20 Alloy Sheet Platinum Iridium Catalyst Foil

Material Properties

Mechanical Properties
Element Value
Elongation at break( % ) <20
Modulus of elasticity( GPa ) 198
Hardness - Vickers( kgf mm⁻² ) 190-200
Tensile strength( MPa ) 680-700
Electrical Properties
Element Value
Electrical resistivity( µOhmcm ) 31-32
Temperature coefficient( K⁻¹ ) 0.001
Thermal Properties
Element Value
Melting point( C ) 1830-2123
Coefficient of thermal expansion( x10⁻⁶ K⁻¹ ) 8.3@0-100°C
Physical Properties
Element Value
Density( gcm⁻³ ) 21.7
each

Choose Your Options

Close

Available Configurations

Properties common to all products in this list

Commodity: Precious Metals Material: Platinum/Iridium Form: Foil Composition: Pt 80/Ir 20

We are collecting your products, please wait!...

Shipping restrictions and charges may apply for some hazardous materials.

Tolerances

Foil
Thickness <0.01mm ±25%
Thickness 0.01mm - 0.05mm ±15%
Thickness >0.05mm ±10%
Linear dimension <100mm ±1mm
Linear dimension >=100mm +2 / -1%