N-4110 Perfluorosulfonic Acid Composite Ion Exchange Membrane for Electrolysis or ElectroplatingProduct Type: Composite ion exchange membrane
commercial grade product
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LABORATORY PROCUREMENT SUPPORT
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E-MAIL: inquiry@atomfair.com
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Manufacturer: Atomfair LLC
Brand: ATOMFAIR®
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The membrane has specified dimensional stability limits under thermal and hydration exposure, including thickness change and linear expansion caps at 23°C and 100°C. These limits define the environmental envelope within which the membrane should be stored and handled.
- Thermal Dimensional Stability: The membrane has a thickness change limit of ≤5% at 23°C and ≤10% at 100°C, and a linear expansion limit of ≤2% at 23°C and ≤5% at 100°C.
- Hydration Sensitivity: The membrane has a water content of 5.0±3.0% and a water uptake of 50.0±5.0%, indicating that hydration state is a relevant variable for dimensional behavior.
- Mechanical Deformation Limits: The membrane has a tensile strength of ≥40 MPa and elongation at break of ≥100%, which define its mechanical deformation limits.
How does the 360 μm thickness of the N-4110 membrane affect its conductivity and mechanical properties for electrolysis applications?
The 360 μm thick-grade membrane provides enhanced mechanical strength with tensile strength ≥40 MPa and elongation ≥100%, while maintaining high conductivity ≥0.100 S/cm and acid capacity 1.00±0.05 meq/g. This design prioritizes mechanical durability over minimal thickness, making it suitable for applications like electrolytic chlorine dioxide generation and etching solution recovery where robustness is essential.
What types of electrolytic processes is the N-4110 membrane specifically designed for?
The N-4110 membrane is designed for electrolytic chlorine dioxide generators, etching solution recovery, precious metal salt preparation, amino acid purification, caustic soda production, and electrodialysis. It is a perfluorosulfonic acid composite membrane with a standard 1 m x 1 m sheet size; custom dimensions require email confirmation. The membrane's performance parameters (conductivity, acid capacity, water uptake) are optimized for these specific electrolytic applications.
What are the dimensional stability specifications of the N-4110 membrane under thermal cycling?
The membrane thickness change is ≤5% at 23°C and ≤10% at 100°C, and linear expansion is ≤2% at 23°C and ≤5% at 100°C. These parameters are critical for designing sealing systems and electrode assemblies that must accommodate thermal expansion without compromising membrane integrity or causing leakage in electrolytic cells.
The N-4110 perfluorosulfonic acid composite ion exchange membrane (360 μm, 470 g/m²) offers high mechanical strength and ionic conductivity for electrolytic processes, but requires careful thermal management due to dimensional changes up to 10% at 100°C and accommodation of significant water uptake (50±5%) during assembly.
Positive
- Thick-Grade Mechanical Durability: 360 μm thickness and 470 g/m² basis weight provide tensile strength ≥40 MPa and elongation ≥100%, ensuring reliable long-term use in electrolytic environments.
- High Ionic Conductivity: Conductivity ≥0.100 S/cm enables efficient ion exchange, critical for electrolysis, electrodialysis, and electroplating applications.
Trade-offs
- Temperature-Dependent Dimensional Changes: Thickness change ≤10% at 100°C and linear expansion ≤5% at 100°C require thermal management in cell design to maintain membrane integrity and seal performance.
- Significant Water Uptake Swelling: Water uptake of 50±5% indicates substantial swelling that must be accommodated in clamping and sealing to prevent mechanical stress or leakage during operation.
Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.
To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.
Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).






