High-Quality ZIF-67 Powder MOFs from China Suppliers and Factory - Superior Surface Area and Micropore Structure
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| Product Name | ZIF-67 |
| Particle size | 400~500 nm |
| Specific surface area | ≥2100 ㎡/g |
| Pore size | 0.5~0.9 nm |
ZIF-67 has been employed in biosensing and disease diagnosis, where it is integrated into composites to enhance catalytic and electrocatalytic activities. It has also been studied in cement composites, where it enhances the compressive strength and microstructure of the cement. Additionally, ZIF-67 has been investigated as a catalyst for the selective catalytic reduction of NOx using CO as a reducing agent, demonstrating high activity under aerobic conditions. Furthermore, ZIF-67 has shown promise in the efficient photoreduction of CO2, delivering excellent photocatalytic performance and a high CO yield. ZIF-67 films have also been fabricated on various substrates for supercapacitor applications, exhibiting strong electrochemical properties.
What is the specific surface area and pore size of ZIF-67?
ZIF-67 features a high specific surface area of ≥2100 ㎡/g and a pore size ranging from 0.5 to 0.9 nm, making it highly effective for adsorption and catalytic applications.
How is ZIF-67 utilized in biosensing and medical diagnostics?
ZIF-67 is integrated into composites to significantly enhance catalytic and electrocatalytic activities, which are critical for advanced biosensing and disease diagnosis applications.
What role does ZIF-67 play in cement composites?
When incorporated into cement composites, ZIF-67 improves the material performance by enhancing both the compressive strength and the overall microstructure of the cement.
Can ZIF-67 be used for environmental catalysis like NOx reduction?
Yes, ZIF-67 serves as an effective catalyst for the selective catalytic reduction of NOx. It utilizes CO as a reducing agent and exhibits high catalytic activity under aerobic conditions.
Does ZIF-67 support CO2 photoreduction?
Yes, ZIF-67 shows great promise in the efficient photoreduction of CO2, delivering excellent photocatalytic performance and achieving a high CO yield.
Is ZIF-67 applicable to energy storage systems like supercapacitors?
Indeed, ZIF-67 thin films can be fabricated on various substrates for supercapacitor applications, where they display strong and stable electrochemical properties.

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