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CAS RN: 4371-28-2 | Product Number: B3792
Biphenyl-3,3',5,5'-tetracarboxylic Acid
Purity: >98.0%(HPLC)
Synonyms:
Documents:
Size | Unit Price | Belgium | Japan* | Quantity |
---|---|---|---|---|
200MG |
£82.00
|
2 | 14 |
|
*Stock available in Belgium will be delivered in 1 to 3 days
*Stock available in Japan will be delivered in 1 to 2 weeks (excludes regulated items and dry ice shipments).
Specifications
Appearance | White to Almost white powder to crystal |
Purity(HPLC) | min. 98.0 area% |
Purity(Neutralization titration) | min. 97.0 % |
Properties (reference)
GHS
Pictogram |
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Signal Word | Warning |
Hazard Statements | H315 : Causes skin irritation. H319 : Causes serious eye irritation. |
Precautionary Statements | P264 : Wash skin thoroughly after handling. P280 : Wear protective gloves/ eye protection/ face protection. P302 + P352 : IF ON SKIN: Wash with plenty of water. P337 + P313 : If eye irritation persists: Get medical advice/ attention. P362 + P364 : Take off contaminated clothing and wash it before reuse. P332 + P313 : If skin irritation occurs: Get medical advice/ attention. |
Related Laws:
Transport Information:
HS Number | 2917398590 |
Application
An Organic Ligand Molecule for Syntheses of Coordination Polymers (CPs) and Metal-Organic Frameworks (MOFs)
Porous Coordination polymers (PCPs) and metal-organic frameworks (MOFs), which are combined metal ions and organic ligand molecules, are among the most prolific research areas of inorganic chemistry and crystal engineering. Biphenyl-3,3',5,5'-tetracarboxylic acid is used for syntheses of PCPs and MOFs as an organic ligand molecule.
References
- High H2 adsorption in a microporous metal-organic framework with open metal sites
- Transformation of a metal-organic framework from the NbO to PtS net
- High H2 adsorption by coordination-framework materials
- Frustrated 2D Molecular Crystallization
- High Capacity Hydrogen Adsorption in Cu(II) Tetracarboxylate Framework Materials: The Role of Pore Size, Ligand Functionalization, and Exposed Metal Sites
- Highly Selective CO2 Capture in Flexible 3D Coordination Polymer Networks
PubMed Literature
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