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PCN-222(H)

PCN-222(H)

【Numbering】BK2021012208 【CAS】1403461-06-2
【Item No.】 【specification】
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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℃
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. Gándara, P. L. McGrier, H. Furukawa, D. Cascio, J. F. Stoddart, O. M. Yaghi, Inorg. Chem. 2012, 51, 6443-6445, DOI: 10.1021/ic300825s ; Synthesis, Structure, and Metalation of Two New Highly Porous Zirconium Metal–Organic Frameworks


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