China ZIF-67 Powder Metal Organic Frameworks (MOFs) Suppliers and Factory - High Surface Area & Microporous Structure
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| Technical Specifications | |
|---|---|
| Product Name | ZIF-67 |
| Particle size | 400~500 nm |
| Specific surface area | ≥2100 ㎡/g |
| Pore size | 0.5~0.9 nm |
ZIF-67 is a highly versatile metal-organic framework (MOF) widely utilized across advanced scientific applications, ranging from environmental catalysis to electrochemical energy storage systems.
Biosensing & Diagnosis
Integrated into composites to significantly enhance catalytic and electrocatalytic activities.
Catalytic Reduction & Photoreduction
Acts as a catalyst for selective catalytic reduction of NOx under aerobic conditions, and delivers high CO yield in CO2 photoreduction.
Energy & Infrastructure
Enhances compressive strength and microstructure in cement composites, and exhibits strong electrochemical properties in supercapacitors.
Frequently Asked Questions
Q: What is the particle size and pore size of ZIF-67?
ZIF-67 features a particle size of 400~500 nm and a pore size ranging from 0.5 to 0.9 nm.
Q: What is the specific surface area of ZIF-67?
The specific surface area of ZIF-67 is ≥2100 ㎡/g, providing a highly porous structure suitable for various catalytic processes.
Q: How is ZIF-67 applied in biosensing and disease diagnosis?
In biosensing and disease diagnosis, ZIF-67 is integrated into composites to enhance catalytic and electrocatalytic activities.
Q: What role does ZIF-67 play in environmental catalytic applications?
ZIF-67 serves as an effective catalyst for the selective catalytic reduction of NOx using CO as a reducing agent under aerobic conditions. It also shows high efficiency in the photoreduction of CO2, yielding high levels of CO.
Q: Can ZIF-67 be used in construction materials and energy storage?
Yes. In construction, ZIF-67 enhances the compressive strength and microstructure of cement composites. In energy storage, ZIF-67 films fabricated on various substrates exhibit strong electrochemical properties for supercapacitor applications.

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