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Amorphous Nickel-Iron Oxide (NiFeOx) as Electrocatalysts for Alkaline Electrolyzer, 1 g/bottle, CAEEANiFeO

Amorphous Nickel-Iron Oxide (NiFeOx) as Electrocatalysts for Alkaline Electrolyzer, 1 g/bottle, CAEEANiFeO

$219.00 USD
In Stock SKU: CAEEANiFeOP
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Nickel-Iron Oxides (NiFeOx) are among the most powerful and cost-effective electrocatalysts for alkaline environments. While they are closely related to NiFe-LDH (Layered Double Hydroxides), the "Ox" notation typically refers to the bulk oxide or amorphous mixed-oxide forms, which often serve as the stable "pre-catalyst" for high-performance industrial applications.

The primary application of NiFeOx is as the anode catalyst for the Oxygen Evolution Reaction (OER) in alkaline water electrolysis. It is currently the industry’s best non-precious alternative to Iridium Oxide (IrO2). (1) Anion Exchange Membrane (AEM) Electrolyzers: NiFeOx is the "gold standard" for AEM systems. It allows these electrolyzers to operate without any Platinum Group Metals (PGMs), drastically reducing stack costs while maintaining current densities of 1.0–3.0 A/cm². (2) Amorphous Advantage: Amorphous NiFeOx (often synthesized via sol-gel or electrodeposition) typically outperforms crystalline versions. The disordered structure provides more "bridge" and "edge" sites where Fe atoms can exert their maximum synergistic effect on Nickel. (3) Surface Reconstruction: During operation, the surface of NiFeOx naturally transforms into NiFeOOH (oxyhydroxide). This "in-situ" formed layer is the true active phase that facilitates the 4-electron transfer required to release oxygen.

Part Number

 CAEEANiFeOP

CAEEANiFeOC

CAEEANiFeOCKB

Appearance

Dark brown powder

Black powder

Black powder

Components

Pristine NiFeOx

50 wt% NiFeOx on Vulcan XC-72

50 wt% NiFeOx on Ketjen Black

Average Particle Size

30-50 nm, nearly spherical

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-

Bulk Density

0.87-0.95 g/cm3

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-

True Density

5.368 g/cm3

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-

Specific Surface Area (BET):

~150 m2/g

~180 m2/g

~220 m2/g

Package Size 1.0 g/bottle 1.0 g/bottle 1.0 g/bottle

 

Notes: Please try to store the amorphous NiFeOx powder in a dry place.

References

  1. R. Suzuki, et al. Stability Investigation on NiFeOx Electrocatalysts for Oxygen Evolution During on and off Cycles in Harsh Alkaline Conditions, ChemElectroChem. 2025, 12, e202500081.
  2. H. Xu, et al. Strain Effects and Crystalline-Amorphous Interface of NiFe-LDH@S-NiFeOx/NF with Heterogeneous Structure for Enhancing Electrocatalytic Oxygen Evolution Reaction of Water-Electrolysis, Small, 2025, 21, 2406071

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