China MOF-5 Powder Metal Organic Frameworks Suppliers - High-Performance Factory for Gas Storage and Pollutant Removal
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| Product Name | MOF-5 |
| Particle size | 1-3 um |
| Specific surface area | > 2000㎡/g |
| Pore size | 1.2nm |
Gas Storage Capacity
High porosity makes it ideal for gas storage, especially hydrogen and carbon dioxide. The binding energy for H₂ adsorption is approximately 26-27 meV, indicating effective physisorption (Gurung & Adhikari, 2023). CO₂ can form a liquid-like structure within MOF-5 (Listyarini et al., 2023).
Pollutant Removal
Functionalized MOF-5 is highly effective in removing phenolic pollutants. Fluorine-modified variants demonstrate superior adsorption capabilities driven by enhanced van der Waals and π–π interactions (Razavi et al., 2024).
Moisture Protection
To address moisture susceptibility, a hydrophobic porous shell maintains the structural integrity of MOF-5, enabling efficient CO₂/N₂ separation under humid conditions (Li et al., 2023).
Frequently Asked Questions (FAQ)
What are the primary applications of MOF-5?
MOF-5 is highly recognized for its high porosity, which makes it particularly suitable for gas storage (specifically hydrogen and carbon dioxide) as well as environmental remediation such as removing phenolic pollutants.
How does MOF-5 interact with hydrogen during adsorption?
The binding energy for hydrogen adsorption in MOF-5 is approximately 26-27 meV, which indicates effective physisorption mechanism.
Can MOF-5 be used under humid conditions?
Yes, by developing a hydrophobic porous shell around MOF-5, its structural integrity can be maintained, allowing for efficient CO₂/N₂ separation even under humid conditions.
What makes functionalized MOF-5 effective for pollutant removal?
Fluorine-modified variants of MOF-5 exhibit superior adsorption capabilities for removing phenolic pollutants due to enhanced van der Waals forces and π–π interactions.
What are the physical specifications of MOF-5?
MOF-5 typically features a particle size of 1-3 um, a specific surface area greater than 2000㎡/g, and a pore size of 1.2nm.

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