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Zeolitic Imidazolate Framework-67 (ZIF-67)

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SKU:
NG10MOF0902
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€90.00
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Description

 

1 gram: 90 €
5 grams: 340 €
10 grams: 580 €

Need more than 10 grams? Contact our team for custom bulk pricing tailored to your project!

Zeolitic Imidazolate Framework-67 (ZIF-67)

ZIF-67 is a metal-organic framework (MOF) material composed of cobalt ions and 2-methylimidazole linkers. It exhibits high surface area, excellent chemical and thermal stability, and remarkable catalytic activity due to the presence of cobalt centers. These properties make ZIF-67 highly suitable for applications in catalysis, gas adsorption and separation, energy storage, and environmental remediation. We offer ZIF-67 with high purity and controlled morphology to support advanced research and industrial applications.

Technical Properties 

Empirical Formula Co(C₄H₅N₂)₂    
Color Purple    
Elemental Composition C O Co
  ~87.36 wt% ~7.06 wt% ~5.59 wt%
CAS No 46201-07-4    

SEM Images 

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 XRD Analysis

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Applications

  • Catalysis: ZIF‑67 exhibits remarkable catalytic activity due to cobalt centers, making it highly effective in oxidation, hydrogenation, and electrocatalytic reactions.
  • Gas Separation & Storage: Incorporated into mixed‑matrix membranes, ZIF‑67 enhances CO₂/N₂ separation efficiency and gas adsorption capacity.
  • Environmental Remediation: ZIF‑67 and its derivatives are applied in photocatalytic degradation of pollutants and pharmaceutical residues under visible light.
  • Energy Storage: ZIF‑67‑based composites improve supercapacitor performance and serve as precursors for cobalt oxides in lithium‑ion batteries.
  • Sensors: ZIF‑67 nanostructures are used in gas sensing and electrochemical sensors, offering high sensitivity and selectivity.
  • Biomedical Applications: ZIF‑67 derivatives show potential in drug delivery, antibacterial activity, and bioimaging, leveraging their porosity and cobalt‑based reactivity.
  • Microwave Absorption & Electronics: ZIF‑67/metal oxide hybrids are explored for electromagnetic wave absorption and smart device applications.
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