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Nitrogen-Doped Carbon-Iron Single-Atom Catalyst

Nitrogen-doped carbon-iron single-atom catalyst is a type of catalyst prepared by doping single iron atoms into carbon-based materials (such as carbon nanotubes, graphene, etc.) and simultaneously introducing nitrogen atoms for

Nitrogen-Doped Carbon-Iron Single-Atom Catalyst

Introduction

Nitrogen-doped carbon-iron single-atom catalyst is a type of catalyst prepared by doping single iron atoms into carbon-based materials (such as carbon nanotubes, graphene, etc.) and simultaneously introducing nitrogen atoms for doping.

This design aims to address issues such as aggregation and deactivation commonly found in traditional iron catalysts.

Nitrogen doping helps adjust the electronic structure and surface chemical properties of the catalyst, thereby enhancing its activity and stability in important reactions such as the oxygen reduction reaction (ORR). Additionally, the characteristic of single-atom dispersion maximizes the exposure of active sites, thus improving catalytic efficiency and reducing the deactivation rate of the catalyst during reactions.

This type of catalyst holds promising applications in fields such as fuel cells, metal-air batteries, hydrogen oxidation reactions, etc., due to its ability to provide efficient and stable electrocatalytic performance

Elemental Analysis of Fe-N-C SAC (XPS)

ElementWt%At%
C69.9576.92
N14.5913.76
O9.617.94
Fe5.851.38

Fuel Cells

In fuel cells, this catalyst can be used as a catalyst for the oxygen reduction reaction (ORR), helping to improve the efficiency and stability of fuel cells.

Metal-air Batteries

Metal-air batteries are an important energy storage and conversion technology. Nitrogen-doped carbon-iron single-atom catalysts can be used in the oxygen reduction reaction of metal-air batteries to improve their performance.

Hydrogen Oxidation Reaction

In the hydrogen oxidation reaction, this catalyst can be used as a catalyst for the oxidation reaction, promoting the production of hydrogen.

CO2 Reduction

In mitigating greenhouse gas emissions, nitrogen-doped carbon-iron single-atom catalysts can also be applied to the reduction reaction of CO2, converting it into useful carbon compounds.

Other Electrocatalytic Reactions

In addition to the above applications, this catalyst can also be used for other electrocatalytic reactions, such as oxidation, reduction, and redox reactions.

Specification

Our standard packaging sizes include 1g and 2g.

Technical data

Specifications

Figures below are the manufacturer data for this model. Anything not listed is confirmed in writing with the quotation rather than estimated here.

Product nameFe-N-C SAC
Diameter0.5-2 μm (TEM)
AppearanceBlack Powder
C content65-75wt% (XPS)
N content10-20wt% (XPS)
Fe content4-6wt% (XPS)

Processes This Unit Supports

These are the applications ZYLAB lists this model under. Each link opens the full equipment set for that process, which is useful when a project needs more than one machine.

  • General laboratory sample preparation

Who Orders It

Fields this model already works in, plus what ZYLAB puts behind it: a 2-year warranty on most products, glass excluded, spare parts in stock and free application support by WhatsApp or email.

  • University and institute research laboratories
Buyer questions

Ordering Nitrogen-Doped Carbon-Iron Single-Atom Catalyst

What is Nitrogen-Doped Carbon-Iron Single-Atom Catalyst typically used for?

Nitrogen-doped carbon-iron single-atom catalyst is a type of catalyst prepared by doping single iron atoms into carbon-based materials (such as carbon nanotubes, graphene, etc.) and simultaneously introducing nitrogen atoms for

Can Nitrogen-Doped Carbon-Iron Single-Atom Catalyst be customised for our process?

Yes. Chamber or tube size, temperature profile, atmosphere, gas path, control system and data recording can all be adapted. Send us your process conditions and sample details and our engineers work out a configuration with you.

How quickly can Nitrogen-Doped Carbon-Iron Single-Atom Catalyst be shipped?

Most standard ZYLAB models are held in stock. After testing and packing we normally ship Nitrogen-Doped Carbon-Iron Single-Atom Catalyst within 3 to 7 days. Customised builds are scheduled after the drawing is confirmed, and we give you the date in writing before the order is placed.

How is Nitrogen-Doped Carbon-Iron Single-Atom Catalyst packed for export?

Packing is chosen for the safety of the machine against freight cost, typically a plywood or wooden crate with internal padding and vacuum-sealed accessories. Export documents such as Form A, Form E and Form F can be issued to help you save duty.

Can you supply items that are not on this page?

Yes. We have access to the complete lines of most of our suppliers and build custom equipment in our own factory, so tell us what the experiment needs and we will source or make it.

Quote For Nitrogen-Doped Carbon-Iron Single-Atom Catalyst

Tell us the sample, the temperature and the atmosphere. You get the configuration, the price and the despatch date in one reply.