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NEXIONIC® CCMA01 Fumasep FAA-3-PK-75 CCM for AEM Water Electrolysis

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  • Brand:NEXIONIC®
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  • Keywords:NEXIONIC® CCMA01 Fumasep FAA-3-PK-75 CCM for AEM Water Electrolysis, SCI Materials Hub
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🔬 NEXIONIC® CCMA01 AEM Water Electrolysis Membrane Electrode
Powered by Fumasep® FAA-3-PK-75 Anion Exchange Membrane

The NEXIONIC® CCMA01 membrane electrode assembly (MEA) is designed specifically for advanced alkaline water electrolysis systems using anion exchange membranes (AEMs). It features a high-performance Fumasep® FAA-3-PK-75 membrane as the ion-conducting core, sandwiched between customizable catalyst layers on the cathode and anode sides. The three-layer MEA structure is manufactured by spray coating or hot-press transfer, ensuring excellent interfacial contact, low resistance, and high catalytic efficiency.

⚙️ Customizable Catalyst Layers

Electrode SideCatalyst OptionsLoading (typical)
CathodePt/C, PtRu/C, FeCoNi, NiFeOx0.5–2.0 mg/cm²
AnodeNiFeOx, Ir, IrO₂, NiFe-LDH1.0–2.0 mg/cm²
The CCMA01 electrode supports both noble metal and non-noble metal catalyst combinations. This makes it an ideal platform for performance benchmarking and cost-performance optimization.

🧪 Ionomer Binder Options

To ensure excellent ionic conductivity and chemical compatibility with different electrolytes (e.g., KOH, K₂CO₃), the electrode can be formulated with a wide range of ionomers: Nafion®, Fumion® (default), PiperION®, QAPPT®, NEXIONIC®

Binder content is typically 10-20 wt%, adjustable from 10% to 35% to meet performance needs.


📐 Technical Specifications

ParameterDescription
Structure3-layer MEA (Cathode Catalyst + AEM + Anode Catalyst)
AEM TypeFumasep® FAA-3-PK-75 (~75 µm thickness)
Catalyst Loading0.5–2.0 mg/cm² (customizable)
Ionomer Content10–35 wt% (recommended: 20 wt%)
Fabrication ProcessSpray Coating / Hot-Press Transfer
Default Delivery StateDry (wet version available)
Electrode SizesStandard: 1×1, 2×2, 5×5, 10×10 cm²; Custom: circular, shaped cuts
Add-on StructuresOptional GDL, sealing frame, or support mesh
OrientationAnode side (Ir/NiFe +) faces OER; Cathode side (Pt/FeCoNi -) faces HER

✅ Key Advantages

FeatureDescription
Integrated 3-layer DesignStrong bonding, low interfacial resistance
High CustomizabilityCatalyst loading, dimensions, binder, structures all adjustable
Wide Catalyst OptionsNoble and non-noble metal options for anode/cathode
Dual Fabrication RoutesSpray or transfer methods ensure flexibility in interface design
Multi-Ionomer CompatibilitySuits diverse AEM chemistries and electrolytes
Research-Grade QualityIdeal for high-efficiency lab and pilot-scale experiments

🔬 Application Scenarios

  • AEM single-cell water electrolysis testing

  • Electrolyzer stack development

  • Catalyst screening and performance benchmarking

  • Alkaline MEA durability and interface studies

  • University teaching labs and green hydrogen R&D


🛠 Optional Customization Services

ModuleCustomization Options
Electrode SizeAny shape: square, circular, irregular
Catalyst LoadingAdjustable based on required performance
Ionomer TypeCustom binders for specific electrolytes
Additional LayersGDLs, sealing frames, PTL support layers
Hot Press TreatmentDelivered hot-pressed or unpressed
Process SelectionSpray coating or transfer process

📦 Delivery & Support

  • Shipping: international shipping supported

  • Lead Time: Stock items ship in 1–3 working days; custom orders in 3–7 working days\

  • Invoicing: VAT general or special invoices available for academic or institutional reimbursement

  • Support: Custom design assistance, data sheets, and compatible system components available upon request


For paired equipment such as electrolyzer cells, GDLs, sealing frames, or potentiostats, one-stop sourcing is available.

For international orders, please ask us for quotes via

Email: contact@scimaterials.cn

Tel: +86 130-0303-8751 / +86 156-0553-2352

Wechat: 15375698751


Clik here to put quick orders on our ebay / Amazon stores

Active Area (cm²)Cathode CatalystAnode CatalystMembraneMethodePrice & Catalyst loading (Cathode + Anode)
1x1FeCoNiNiFeOx

Fumasep FAA-3-PK-75

3x3cm

Spray coating

USD$20 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$20 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$38 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

1x1FeCoNiNiFeOx

Fumasep FAA-3-PK-75

3x3cm

Hot-press transfer

USD$30 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$30 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$58 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

1x1PtRu/CIr

Fumasep FAA-3-PK-75

3x3cm

Spray coating

USD$30 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$30 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$58 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

1x1PtRu/CIr

Fumasep FAA-3-PK-75

3x3cm

Hot-press transfer

USD$40 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$40 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$78 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

2x2FeCoNiNiFeOx

Fumasep FAA-3-PK-75

4x4cm

Spray coating

USD$30 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$30 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$58 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

2x2FeCoNiNiFeOx

Fumasep FAA-3-PK-75

4x4cm

Hot-press transfer

USD$40 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$40 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$78 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

2x2PtRu/CIr

Fumasep FAA-3-PK-75

4x4cm

Spray coating

USD$40 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$40 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$78 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

2x2PtRu/CIr

Fumasep FAA-3-PK-75

4x4cm

Hot-press transfer

USD$50 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$50 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$98 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

2.25x2.25FeCoNiNiFeOx

Fumasep FAA-3-PK-75

5x5cm

Spray coating

USD$40 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$40 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$78 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

2.25x2.25FeCoNiNiFeOx

Fumasep FAA-3-PK-75

5x5cm

Hot-press transfer

USD$50 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$50 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$98 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

2.25x2.25PtRu/CIr

Fumasep FAA-3-PK-75

5x5cm

Spray coating

USD$50 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$50 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$98 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

2.25x2.25PtRu/CIr

Fumasep FAA-3-PK-75

5x5cm

Hot-press transfer

USD$60 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$60 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$118 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

5x5FeCoNiNiFeOx

Fumasep FAA-3-PK-75

7x7cm

Spray coating

USD$120 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$120 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$230 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

5x5FeCoNiNiFeOx

Fumasep FAA-3-PK-75

7x7cm

Hot-press transfer

USD$150 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$150 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$290 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

5x5PtRu/CIr

Fumasep FAA-3-PK-75

7x7cm

Spray coating

USD$150 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$150 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$290 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

5x5PtRu/CIr

Fumasep FAA-3-PK-75

7x7cm

Hot-press transfer

USD$180 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$180 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$350 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

10x10FeCoNiNiFeOx

Fumasep FAA-3-PK-75

12x12cm

Spray coating

USD$360 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$360 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$700 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

10x10FeCoNiNiFeOx

Fumasep FAA-3-PK-75

12x12cm

Hot-press transfer

USD$450 (0 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

USD$450 (2 mg/cm² FeCoNi + 0 mg/cm² NiFeOx)

USD$890 (2 mg/cm² FeCoNi + 2 mg/cm² NiFeOx)

10x10PtRu/CIr

Fumasep FAA-3-PK-75

12x12cm

Spray coating

USD$450 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$450 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$890 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

10x10PtRu/CIr

Fumasep FAA-3-PK-75

12x12cm

Hot-press transfer

USD$540 (0 mg/cm² PtRu/C + 1 mg/cm² Ir)

USD$540 (0.5 mg/cm² PtRu/C + 0 mg/cm² Ir)

USD$1000 (0.5 mg/cm² PtRu/C + 1 mg/cm² Ir)

Customized sizeCustomizableCustomizableCustomizableCustomizableAsk for quote

Other cost: hot pressing (+USD10), hot pressing+PPS edge banding film (+USD30)


Worldwide shipping via DHL, SF-Express & other requested carriers.

Bulk quantities with discount upon request.


Payments via Bank Wire Transfer, Paypal, Credit card (via Taobao), Alipay, Wechat-pay are accepted.

Partial references citing our materials (from Google Scholar)


Carbon Dioxide Reduction

1. ACS Nano Strain Relaxation in Metal Alloy Catalysts Steers the Product Selectivity of Electrocatalytic CO2 Reduction

The bipolar membrane (Fumasep FBM) in this paper was purchased from SCI Materials Hub, which was used in rechargeable Zn-CO2 battery tests. The authors reported a strain relaxation strategy to determine lattice strains in bimetal MNi alloys (M = Pd, Ag, and Au) and realized an outstanding CO2-to-CO Faradaic efficiency of 96.6% with outstanding activity and durability toward a Zn-CO2 battery.


2. Front. Chem. Boosting Electrochemical Carbon Dioxide Reduction on Atomically Dispersed Nickel Catalyst

In this paper, Vulcan XC-72R was purchased from SCI Materials Hub. Vulcan XC 72R carbon is the most common catalyst support used in the anode and cathode electrodes of Polymer Electrolyte Membrane Fuel Cells (PEMFC), Direct Methanol Fuel Cells (DMFC), Alkaline Fuel Cells (AFC), Microbial Fuel Cells (MFC), Phosphoric Acid Fuel Cells (PAFC), and many more!


3. Adv. Mater. Partially Nitrided Ni Nanoclusters Achieve Energy-Efficient Electrocatalytic CO2 Reduction to CO at Ultralow Overpotential

An AEM membrane (Sustainion X37-50 Grade RT, purchased from SCI Materials Hub) was activated in 1 M KOH for 24 h, washed with ultra-purity water prior to use.


4. Adv. Funct. Mater. Nanoconfined Molecular Catalysts in Integrated Gas Diffusion Electrodes for High-Current-Density CO2 Electroreduction

In this paper (Supporting Information), an anion exchanged membrane (Fumasep FAB-PK-130 obtained from SCI Materials Hub (www.scimaterials.cn)) was used to separate the catholyte and anolyte chambers.

SCI Materials Hub: we also recommend our Fumasep FAB-PK-75 for the use in a flow cell.


5. Appl. Catal. B Efficient utilization of nickel single atoms for CO2 electroreduction by constructing 3D interconnected nitrogen-doped carbon tube network

In this paper, the Nafion 117 membrane was obtained from SCI Materials Hub.


6. Vacuum Modulable Cu(0)/Cu(I)/Cu(II) sites of Cu/C catalysts derived from MOF for highly selective CO2 electroreduction to hydrocarbons

In this paper, Proton exchange membrane (Nafion 117), Nafion D520, and Toray 060 carbon paper were purchased from SCI Materials Hub.


7. National Science Review Confinement of ionomer for electrocatalytic CO2 reduction reaction via efficient mass transfer pathways

An anion exchange membrane (PiperION-A15-HCO3) was obtained from SCI Materials Hub.


8. Catalysis Communications Facilitating CO2 electroreduction to C2H4 through facile regulating {100} & {111} grain boundary of Cu2O

Carbon paper (TGPH060), membrane solution (Nafion D520), and ionic membrane (Nafion N117) were obtained from Wuhu Eryi Material Technology Co., Ltd (a company under SCI Materials Hub).


Batteries

1. J. Mater. Chem. A Blocking polysulfides with a Janus Fe3C/N-CNF@RGO electrode via physiochemical confinement and catalytic conversion for high-performance lithium–sulfur batteries

Graphene oxide (GO) in this paper was obtained from SCI Materials Hub. The authors introduced a Janus Fe3C/N-CNF@RGO electrode consisting of 1D Fe3C decorated N-doped carbon nanofibers (Fe3C/N-CNFs) side and 2D reduced graphene oxide (RGO) side as the free-standing carrier of Li2S6 catholyte to improve the overall electrochemical performance of Li-S batteries.


2. Joule A high-voltage and stable zinc-air battery enabled by dual-hydrophobic-induced proton shuttle shielding

This paper used more than 10 kinds of materials from SCI Materials Hub and the authors gave detailed properity comparsion.

The commercial IEMs of Fumasep FAB-PK-130 and Nafion N117 were obtained from SCI Materials Hub.

Gas diffusion layers of GDL340 (CeTech) and SGL39BC (Sigracet) and Nafion dispersion (Nafion D520) were obtained from SCI Materials Hub.

Zn foil (100 mm thickness) and Zn powder were obtained from the SCI Materials Hub.

Commercial 20% Pt/C, 40% Pt/C and IrO2 catalysts were also obtained from SCI Materials Hub.


3. Journal of Energy Chemistry Vanadium oxide nanospheres encapsulated in N-doped carbon nanofibers with morphology and defect dual-engineering toward advanced aqueous zinc-ion batteries

In this paper, carbon cloth (W0S1011) was obtained from SCI Materials Hub. The flexible carbon cloth matrix guaranteed the stabilization of the electrode and improved the conductivity of the cathode.


4. Energy Storage Materials Defect-abundant commercializable 3D carbon papers for fabricating composite Li anode with high loading and long life

The 3D carbon paper (TGPH060 raw paper) were purchased from SCI Materials Hub.


5. Nanomaterials A Stable Rechargeable Aqueous Zn–Air Battery Enabled by Heterogeneous MoS2 Cathode Catalysts

Nafion D520 (5 wt%), and carbon paper (GDL340) were received from SCI-Materials-Hub.


6. SSRN An Axially Directed Cobalt-Phthalocyanine Covalent Organic Polymer as High-Efficient Bifunctional Catalyst for Zn-Air Battery

Carbon cloth (W0S1011) and other electrochemical consumables required for air cathode were provided by SCI Materials Hub.


Oxygen Reduction Reaction

1. J. Chem. Eng. Superior Efficiency Hydrogen Peroxide Production in Acidic Media through Epoxy Group Adjacent to Co-O/C Active Centers on Carbon Black

In this paper, Vulcan XC 72 carbon black, ion membrane (Nafion N115, 127 μL), Nafion solution (D520, 5 wt%), and carbon paper (AvCarb GDS 2230 and Spectracarb 2050A-1050) were purchased from SCI Materials Hub.


2. Journal of Colloid and Interface Science Gaining insight into the impact of electronic property and interface electrostatic field on ORR kinetics in alloy engineering via theoretical prognostication and experimental validation

The 20 wt% Pt3M (M = Cr, Co, Cu, Pd, Sn, and Ir) were purchased from SCI Materials Hub. This work places emphasis on the kinetics of the ORR concerning Pt3M (M = Cr, Co, Cu, Pd, Sn, and Ir) catalysts, and integrates theoretical prognostication and experimental validation to illuminate the fundamental principles of alloy engineering.


Water Electrolysis

1. International Journal of Hydrogen Energy Gold as an efficient hydrogen isotope separation catalyst in proton exchange membrane water electrolysis

The cathodic catalysts of Pt/C (20 wt%, 2–3 nm) and Au/C (20 wt%, 4–5 nm) were purchased from SCI Materials Hub.


2. Small Science Silver Compositing Boosts Water Electrolysis Activity and Durability of RuO2 in a Proton-Exchange-Membrane Water Electrolyzer

Two fiber felts (0.35 mm thickness, SCI Materials Hub) were used as the porous transport layers at both the cathode and the anode.


3. Advanced Functional Materials Hierarchical Crystalline/Amorphous Heterostructure MoNi/NiMoOx for Electrochemical Hydrogen Evolution with Industry-Level Activity and Stability

Anion-exchange membrane (FAA-3-PK-130) was obtained from SCI Materials Hub website.


Fuel Cells

1. Polymer Sub-two-micron ultrathin proton exchange membrane with reinforced mechanical strength

Gas diffusion electrode (60% Pt/C, Carbon paper) was purchased from SCI Materials Hub.


Characterization

1. Chemical Engineering Journal Electrochemical reconstitution of Prussian blue analogue for coupling furfural electro-oxidation with photo-assisted hydrogen evolution reaction

An Au nanoparticle film was deposited on the total reflecting plane of a single reflection ATR crystal (SCI Materials Hub, Wuhu, China) via sputter coater.

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