Zirconium aminobenzenedicarboxylate MOF (UiO-66-BDC-NH2, BDC-NH2:Zr=0.9-1.0)

surface area 800-1075, pore volume 0.31-0.41

  • Product Code: 91259
  CAS:    1260119-00-3
Molecular Weight: Molecular Formula: Zr₆O₄OH₄C₈H₆NO₄₆₄₆₀
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: room temperature
Product Description: This material is widely used in catalysis due to its high surface area and stability, making it effective in facilitating various chemical reactions. It is particularly useful in organic transformations, such as the synthesis of fine chemicals and pharmaceuticals, where its functional groups enhance reactivity and selectivity. In environmental applications, it serves as an efficient adsorbent for the removal of pollutants, including heavy metals and organic contaminants, from water. Its porous structure allows for high uptake capacity and rapid adsorption kinetics. Additionally, it is employed in gas storage and separation processes, leveraging its ability to selectively capture gases like carbon dioxide and methane. This makes it valuable in carbon capture technologies and natural gas purification. Its luminescent properties are also utilized in sensing applications, where it can detect specific analytes or environmental changes with high sensitivity. This is particularly useful in developing advanced sensors for industrial and scientific purposes.
Product Specification:
Test Specification
APPEARANCE Yellow solid
SURFACE AREA 800-1075
PORE VOLUME 0.31-0.41
Infrared spectrum Conforms to Structure
NMR Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.100 10-20 days ฿2,090.00
+
-
0.500 10-20 days ฿8,300.00
+
-
Zirconium aminobenzenedicarboxylate MOF (UiO-66-BDC-NH2, BDC-NH2:Zr=0.9-1.0)
This material is widely used in catalysis due to its high surface area and stability, making it effective in facilitating various chemical reactions. It is particularly useful in organic transformations, such as the synthesis of fine chemicals and pharmaceuticals, where its functional groups enhance reactivity and selectivity. In environmental applications, it serves as an efficient adsorbent for the removal of pollutants, including heavy metals and organic contaminants, from water. Its porous structure allows for high uptake capacity and rapid adsorption kinetics. Additionally, it is employed in gas storage and separation processes, leveraging its ability to selectively capture gases like carbon dioxide and methane. This makes it valuable in carbon capture technologies and natural gas purification. Its luminescent properties are also utilized in sensing applications, where it can detect specific analytes or environmental changes with high sensitivity. This is particularly useful in developing advanced sensors for industrial and scientific purposes.
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