Material name: PCN-222(H)
Other name: MOF-545
CAS: 1403461-06-2
Structure information
Unit molecular formula C96H52N8O32Zr6 Unit molecular weight 2376.81848
Coordination metal Zr ligand 4-carboxyphenyl porphyrin (CAS: 14609-54-2)
Pore size 3.7nm; 1.3 nm Pore volume 1.5 cm3/g
Specific surface BET specific surface 2000 m2/g
Analog structure
Product traits
Product appearance dark purple powder
Dark Purple Powder
Particle size
2um*50nm needle-like crystal grain
200*20nm rod-shaped nanoparticles (can be used in cell experiments)
stability
1) PCN-222 is stable in air, stable in aqueous solution and acidic conditions (PH 1-11)
2) High thermal stability, thermal decomposition temperature is about 400¡æ
Preservation and activation methods
1) Store in a dry and airtight condition at room temperature or low temperature
2) It is recommended to activate the oven at 120 degrees (vacuum) for 10 hours before use
Other features
Fluorescence: excitation wavelength 413nm, emission wavelength 643nm
Application field
1) PCN-222 has stable one-dimensional pores, which can support metal catalysts or gas storage and adsorption materials
2) PCN-222 has large pores of 3.7nm, which can be used to adsorb embedded drug molecules and smaller molecular weight enzymes and peptides
3) PCN-222 (H or M) can convert oxygen into singlet oxygen under light conditions, has the performance of photocatalytic organic reaction, and can be used as a biological probe
Characterization map
references
1) D. Feng, Z.-Y. Gu, J.-R. Li, H.-L. Jiang, Z. Wei, and H.-C. Zhou, Angew. Chem. 2012, 124, 10453-10456 , DOI: 10.1002/ange.201204475; Zirconium-Metalloporphyrin PCN-222: Mesoporous Metal--Organic Frameworks with Ultrahigh Stability as Biomimetic Catalysts
2) W. Morris, B. Volosskiy, S. Demir, F. G¨¢ndara, PL McGrier, H. Furukawa, D. Cascio, JF Stoddart, OM Yaghi, Inorg. Chem. 2012, 51, 6443-6445, DOI: 10.1021 /ic300825s; Synthesis, Structure, and Metalation of Two New Highly Porous Zirconium Metal¨COrganic Frameworks
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