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3D-Por-COF

3D-Por-COF

CAS NO.:2098960-96-2Formula:C48H30N4O4.C25H24N4Weight: 1107.26106

Product: 3D-Por-COF
Synonyms: None
CAS:None

Basic Information
Unit MF. / Unit MW. /
Linkers

Tetra(p-aminophenyl)methane (TAPM)

5,10,15,20-tetrakis(4-benzaldehyde)porphyrin (p-Por-CHO)

Pore Size 0.60nm-1nm Pore volume /
Surface Area >1000 m²/g
Analog Structure Presumed to be a 2-fold interpenetrated pts topology with Pmc2₁ space group, no corresponding image provided
Product Property
Appearance Deep red powder  
Particle Size Not mentioned
Stability
1) It shows high stability in common organic solvents, water, and alkaline solutions within 24 hours.
2) Thermal stability: Thermogravimetric analysis indicates high thermal stability up to 500 °C, and the thermal decomposition temperature is not mentioned.
Preservation
1) No special storage conditions are mentioned in the text. Refer to the conventional method: Store in a dry and sealed condition at room temperature or low temperature.
2) Activation method is not mentioned. It can refer to the conventional suggestion: Activate in a vacuum oven at room temperature for 3 hours before use (needs to be verified in practice).
Other Features
1. Fluorescence: Not mentioned.
2. Others: Photosensitive material, can be used as a heterogeneous catalyst to generate singlet oxygen under photoirradiation; shows enhanced photocatalytic activity compared with 3D-CuPor-COF.
Applications
1) In photocatalysis: It can be used as a heterogeneous photocatalyst to activate molecular oxygen to generate singlet oxygen under photoirradiation.
2) In catalytic research: It provides a research direction for the synthesis of 3D COFs containing other metalloporphyrins for catalytic applications.
Characterizations
XRD
NA
SEM
NA
BET
Na
FTIR
NA
References
1) Lin, Guiqing; Ding, Huimin; Chen, Rufan; Peng, Zhengkang; Wang, Baoshan; Wang, Cheng. Journal of the American Chemical Society, 2017, 139(29), 8705 - 8709, DOI: 10.1021/jacs.7b04141, 3D Porphyrin - Based Covalent Organic Frameworks