ZIF-93 Powder Metal Organic Frameworks (MOFs) from China Suppliers and Factory for Gas Adsorption Applications
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| Product Name | ZIF-93 |
|---|---|
| Particle size | 3-6 um |
| Specific surface area | ≥1121 ㎡/g |
| Pore size | 1.57 nm |
ZIF-93 has been synthesized using a water-based method, demonstrating high purity and efficiency in CO₂ adsorption from binary mixtures (Ramos-Fernandez et al., 2018). Its porous structure allows for selective gas adsorption, which is crucial for mitigating greenhouse gas emissions.
Hybrid nanoparticles of ZIF-93 have been developed to enhance thermal stability and hydrophobicity, improving its performance in mixed matrix membranes for H₂/CO₂ separation (Sánchez-Laínez et al., 2018). The membranes achieved a H₂/CO₂ selectivity of 7.7, surpassing established benchmarks, indicating ZIF-93's potential in energy applications.
ZIF-93 can be integrated with bioactive molecules to create advanced biosensors, leveraging its surface properties for the immobilization of biomolecules (Mousavi et al., 2024) (Feng et al., 2023). While ZIF-93 shows great promise in these applications, challenges remain in scaling production and optimizing its properties for specific uses. Further research is essential to fully realize its potential across various industries.
ZIF-93 features a particle size of 3-6 um, a specific surface area of ≥1121 ㎡/g, and a pore size of 1.57 nm.
ZIF-93 is synthesized using a water-based method, which results in high purity and high efficiency for target applications.
Due to its porous structure, ZIF-93 allows for highly selective gas adsorption, making it extremely effective at capturing CO₂ from binary mixtures to help mitigate greenhouse gas emissions.
When integrated into mixed matrix membranes, hybrid nanoparticles of ZIF-93 improve thermal stability and hydrophobicity, achieving a remarkable H₂/CO₂ selectivity of 7.7.
Yes, ZIF-93 can be integrated with bioactive molecules. Its unique surface properties make it ideal for the immobilization of biomolecules to create advanced biosensors.
Key challenges include scaling up production and optimizing the material's properties for specific industrial applications.

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