MOF-303 Powder Metal Organic Frameworks (MOFs) from China Suppliers & Factory for Gas Separation and Biomedical Applications
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| Product Name | MOF-303 |
| Particle size | ≈0.2 μm |
| Specific surface area | ≥1100㎡/g |
| Pore size | 0.3~0.5 nm |
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In pervaporation, modified versions of MOF-303, such as the mixed-linker variant, have shown enhanced separation performance for water and ethanol, achieving improved mass flux and stability compared to the unmodified form. The mixed-linker MOF-303(50/50) exhibited a water/ethanol separation factor of 8500, indicating its effectiveness in this application.
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Additionally, MOF-303 serves as an effective adsorbent for capturing sulfur dioxide (SO2), demonstrating high selectivity over methane (CH4) and carbon dioxide (CO2), which is crucial for mitigating catalyst poisoning in energy applications.
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Furthermore, a functionalized magnetic probe based on MOF-303 has been developed for the efficient analysis of N-linked glycopeptides, showcasing its utility in clinical diagnostics and glycoproteomics. Overall, MOF-303's versatility across these domains highlights its importance in advancing both industrial and biomedical applications.
Frequently Asked Questions
Q: What is the separation efficiency of MOF-303 for water and ethanol?
A: The mixed-linker MOF-303(50/50) variant exhibits a high water/ethanol separation factor of 8500, showing superior mass flux and stability.
Q: Can MOF-303 be used for gas purification?
A: Yes, it is highly effective at capturing sulfur dioxide (SO2) with high selectivity over methane (CH4) and carbon dioxide (CO2).
Q: What are the physical specifications of MOF-303?
A: It features a particle size of approximately 0.2 μm, a specific surface area of ≥1100㎡/g, and a pore size ranging from 0.3 to 0.5 nm.
Q: How does MOF-303 contribute to clinical diagnostics?
A: It is used to develop functionalized magnetic probes for the efficient analysis of N-linked glycopeptides in glycoproteomics.
Q: Why is SO2 selectivity important for MOF-303 applications?
A: High selectivity for SO2 is crucial for preventing catalyst poisoning in various energy-related industrial applications.

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