Perfluorosulfonic Acid VFB PEM N-114 100μm ATOMFAIR®

$997.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Commercial-grade N-114 perfluorosulfonic acid VFB PEM, 100 μm thick, 1 m × 1 m sheet, ≥0.100 S/cm conductivity and ≥30 MPa tensile strength. Order now.

SKU: AF-MB-M-VFB0-PEM0-T100
Category:
Brands:

N-114 Perfluorosulfonic Acid Proton Exchange Membrane for Vanadium Flow Battery

Product Type: Vanadium Flow Battery Proton Exchange Membrane
commercial grade product

Product Overview

N-114 is a 100 μm membrane with a basis weight of 197 g/m². The incorporation of specialty materials during tape casting significantly improves strength, vanadium resistance, and durability. This grade is designed for heavy-duty flow battery operations.

The membrane family supports vanadium flow battery applications where proton conductivity, acid capacity and controlled water uptake are quotation-critical specifications. The standard product size is 1m x 1m, equal to 1 m²; other dimensions should be confirmed separately before quotation.

Performance Features

  • Thick-Grade: Provides 100 μm thickness and 197 g/m² basis weight for substantial mechanical protection.
  • Mechanical-Strength: Delivers tensile strength ≥30 MPa and elastic modulus ≥400 MPa for demanding conditions.

  • Ionic-Conductivity: Offers in-plane conductivity ≥0.100 S/cm and normal conductivity ≥0.04 S/cm.

  • Acid-Capacity: Maintains acid capacity at 1.00+/-0.05 meq/g for reliable ion exchange.

  • Standard-Square Footprint: Supplied as 1 m × 1 m (1 m²); other dimensions available upon email request.

Technical Specifications

Parameter Specification / Available Values
Atomfair Model AF-PEM-VFB100
Standard Sheet Size 1 m x 1 m (1 m²)
Thickness 100 μm
Basis Weight 197 g/m²
Tensile Strength 30 MPa
Elastic Modulus 400 MPa
Elongation at Break 120%
Specific Gravity 1.97
Conductivity 0.100 S/cm
Normal Conductivity 0.04 S/cm
Acid Capacity 1.00 +/- 0.05 meq/g
Water Content 5.0 +/- 3.0%
Water Uptake 50.0 +/- 5.0%
Specification Confirmation: Standard packaging ensures membrane protection during transit.
Quotation Support: For custom sizes, please include dimensions in your email inquiry.
LABORATORY PROCUREMENT SUPPORT
For model selection, application fit or configuration confirmation, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

The membrane requires storage in a dry, clean environment to prevent contamination or moisture absorption that could compromise proton conductivity. Exposure to high humidity or liquid water before installation may cause dimensional swelling and reduce mechanical integrity within the vanadium flow battery stack.

  • Moisture Sensitivity: Maintaining water content within the specified 5.0 ± 3.0% range is critical for consistent ion-exchange performance and avoidance of proton conductivity degradation.
  • Mechanical Handling Constraint: The membrane must not be folded, creased, or punctured during handling, as its 100 μm thickness and ≥120% elongation at break cannot guarantee against crack propagation from localized stress points.

The membrane is a 100 μm perfluorosulfonic acid film requiring careful unpacking and pre-assembly conditioning to preserve proton conductivity and mechanical integrity. Proper hydration equilibration and alignment within the stack are essential to prevent leakage and ensure long cycling life.

Required Equipment: Clean, lint-free gloves, PTFE-coated or ceramic scissors, Ultrapure deionized water bath (18.2 MΩ·cm)

  1. Inspect Membrane Packaging
    Inspect the sealed packaging for any punctures or moisture intrusion before opening to confirm the membrane has not been pre-exposed to ambient humidity.
  2. Cut Membrane to Required Dimensions
    Cut the membrane to the required stack dimensions using clean, sharp PTFE-coated or ceramic scissors, ensuring no jagged edges or folds form along the cut line.
  3. Equilibrate Membrane in Deionized Water
    Immerse the cut membrane in an ultrapure deionized water bath at 20–25°C for 30 minutes to allow uniform water uptake within the specified 50.0 ± 5.0% tolerance.
  4. Remove Excess Surface Water
    Remove the membrane from the bath and gently blot both surfaces with a lint-free wipe to eliminate excess droplets without applying pressure that could deform the film.
  5. Align Membrane in Battery Stack
    Align the hydrated membrane precisely between the electrode and flow-field layers of the vanadium flow battery stack, ensuring full coverage and no wrinkles that could create leakage paths.

Why is the N-114 membrane designed with a 100 μm thickness for vanadium flow battery applications?

The N-114 membrane's 100 μm thickness provides substantial mechanical protection, with tensile strength ≥30 MPa and elastic modulus ≥400 MPa, while maintaining in-plane conductivity ≥0.100 S/cm. This thick-grade design is specifically engineered to improve vanadium resistance and durability for heavy-duty flow battery operations, as stated in the product specifications.

What is the significance of the acid capacity specification of 1.00±0.05 meq/g for the N-114 membrane?

The acid capacity of 1.00±0.05 meq/g ensures reliable ion exchange capacity, which is critical for proton conductivity in vanadium flow batteries. This specification, combined with water uptake of 50.0±5.0% and water content of 5.0±3.0%, directly influences the membrane's proton transport efficiency and overall battery performance.

What are the key mechanical properties to consider when handling or installing the N-114 membrane?

The membrane has a tensile strength ≥30 MPa, elastic modulus ≥400 MPa, and elongation at break ≥120%, indicating it can withstand significant strain during handling. However, its basis weight of 197 g/m² and specific gravity of 1.97 suggest it is relatively dense; standard packaging ensures protection during transit, and care should be taken to avoid creasing or puncturing before installation.

The N-114 membrane offers 100 μm thickness with high mechanical strength and ionic conductivity, tailored for heavy-duty vanadium flow battery operations. Its controlled water uptake and acid capacity ensure consistent ion exchange performance, though standard sizing and moisture sensitivity require careful handling.

Positive

  • Thick-Grade Mechanical Protection: At 100 μm thickness with tensile strength ≥30 MPa and elastic modulus ≥400 MPa, this membrane provides robust mechanical durability for demanding flow battery conditions.
  • High Ionic Conductivity and Acid Capacity: In-plane conductivity ≥0.100 S/cm and acid capacity 1.00±0.05 meq/g enable efficient proton transport and reliable ion exchange in vanadium redox flow batteries.

Trade-offs

  • Controlled Water Uptake Tolerance: Water uptake is specified at 50.0±5.0% and water content at 5.0±3.0%, requiring controlled humidity and handling to maintain performance within specification.
  • Standard Sheet Size Limitation: Supplied as 1 m x 1 m sheets; custom dimensions require email inquiry, potentially adding lead time for non-standard installations.

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).