China ZIF-93 Powder Metal Organic Frameworks (MOFs) - Leading Suppliers & Factory for Gas Adsorption Solutions
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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.
Q:What is ZIF-93 and how is it synthesized?
ZIF-93 is a zeolitic imidazolate framework synthesized using a water-based method, which ensures high purity and high efficiency for environmental and energy applications.
Q:What are the key physical properties of ZIF-93?
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, making it highly porous and suitable for selective adsorption.
Q:How does ZIF-93 contribute to gas separation?
ZIF-93 is highly efficient in CO2 adsorption from binary mixtures. When developed into hybrid nanoparticles for mixed matrix membranes, it achieves a high H2/CO2 selectivity of 7.7.
Q:Can ZIF-93 be used in biosensing applications?
Yes, ZIF-93 can be integrated with bioactive molecules to create advanced biosensors by leveraging its surface properties for efficient biomolecule immobilization.
Q:What are the current challenges in the development of ZIF-93?
The primary challenges lie in scaling up the production process and optimizing its chemical and physical properties for specific industrial applications.

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