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UIO-66-COOH Powder MOF

UIO-66-COOH Powder MOF

550 INR/Gram

Product Details:

  • Molecular Formula [Zr6O4(OH)4(BDC-COOH)6]
  • Density 1.6 Gram per cubic centimeter(g/cm3)
  • Other Names Zr-1,4-benzenedicarboxylic acid MOF, Carboxyl Functionalized UIO-66
  • Storage Store in a cool, dry place, in tightly sealed container, away from moisture
  • Purity >99%
  • HS Code 38249900
  • Shape Crystalline powder
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UIO-66-COOH Powder MOF Price And Quantity

  • 1 Gram
  • 550 INR/Gram
  • White to off-white
  • Cubic
  • Up to 400°C
  • High
  • 1200-1500 m²/g
  • Carboxyl (-COOH)
  • ~6-8 Å (angstroms)
  • 1-5 microns
  • Excellent
  • Solvothermal

UIO-66-COOH Powder MOF Product Specifications

  • Yes
  • Powder
  • Odorless
  • Decomposes above 400C (approx.)
  • Research chemicals, advanced materials synthesis, industrial applications
  • Gas adsorption, catalysis, separation processes, sensor technology, drug delivery
  • Not determined
  • Cr3-BDC-COOH based MOF with Zr6O8 SBUs
  • Neutral (dry powder state)
  • Insoluble in water, soluble in some organic solvents
  • Not fixed (depends on solvation/guest molecules); approx. 1664 g/mol (framework only)
  • Analytical/Research Grade
  • Complies with manufacturer/research specifications
  • Not determined
  • Metal-Organic Framework (MOF) Powder
  • Crystalline powder
  • Not applicable (decomposes on heating)
  • UIO-66-COOH
  • Inorganic-organic hybrid material
  • [Zr6O4(OH)4(BDC-COOH)6]
  • Zirconium-based Metal-Organic Framework (MOF)
  • Store in a cool, dry place, in tightly sealed container, away from moisture
  • 1.6 Gram per cubic centimeter(g/cm3)
  • Zr-1,4-benzenedicarboxylic acid MOF, Carboxyl Functionalized UIO-66
  • >99%
  • 38249900
  • White to off-white
  • Cubic
  • Up to 400°C
  • High
  • 1200-1500 m²/g
  • Carboxyl (-COOH)
  • ~6-8 Å (angstroms)
  • 1-5 microns
  • Excellent
  • Solvothermal

Product Description

UIO-66-COOH PowderMOF

Product

UIO-66-COOH  Powder MOF

CAS No.

1334722-04-1

Appearance

Off-White Powder

Purity 

99%

Size/APS                    

200-800 nm (Can be customized)

Ingredient

C54H22O44Zr6.H6

Product Code

NCZ-MOF-200-21

Stability

Thermal stability: > 350C;
Stable in aqueous and acid solution

Specific Surface

600-700 m2/g (by BET)

Storage

Store at room temperature or 4 C in dry-state. Recommend to be activated at 150 in a vacuum oven for 3-5 hours before use

Pore Size

0.8 nm, 1.1 nm

Metal

Zr

Molecular Weight

1928.12

Ligand

Trimellitic Acid (CAS: 528-44-9)

 

UIO-66-COOH MOF Powder Description

UIO-66-COOHPowder MOF is used as an analytical reagent and Nanochemazone produces manystandard grades when applicable, including Mil Spec (military grade); ACS,Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade;Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) andfollows applicable ASTM testing standards. Typical and custom packaging isavailable. Additional technical, research and safety (MSDS) information isavailable as is a Reference Calculator for converting relevant units ofmeasurement.



Exceptional Porosity and Stability

UIO-66-COOH Powder features a remarkable surface area (1200-1500 m2/g) and robust water-thermal stability, making it suitable for challenging environments. Its durable structure enables reliable performance in catalysis, adsorption, and separation processes where stability and repeatability are crucial.


Versatile Functional Applications

Owing to its carboxyl functionalization and porous cubic network, UIO-66-COOH is effective across a range of fields including gas storage, catalysis, and sensor technology. The functional group enhances affinity for diverse guest molecules, supporting advanced research and industrial applications.


Reliable Purity and Consistency

Manufactured to analytical/research grade standards, UIO-66-COOH Powder is supplied with a purity above 99%. Rigorous quality control ensures high crystallinity and uniform particle size (1-5 microns) for dependable results in innovative material development and process optimization.

FAQ's of UIO-66-COOH Powder MOF:


Q: How should UIO-66-COOH Powder be stored to maintain its properties?

A: Store UIO-66-COOH Powder in a tightly sealed container, in a cool and dry environment, away from moisture. Proper storage preserves its crystallinity, surface area, and chemical stability, which are essential for optimal performance in research and industrial applications.

Q: What are the main benefits of using UIO-66-COOH in gas adsorption or separation processes?

A: UIO-66-COOH delivers high gas adsorption capacity due to its considerable specific surface area and uniform pore size (~6-8 A). Its carboxyl functional group further enhances selectivity and affinity for specific molecules, making it particularly effective for separation and purification tasks.

Q: When is UIO-66-COOH a preferred choice over other MOFs?

A: UIO-66-COOH is ideal when high water and thermal stability are required, or when a MOF with functionalized carboxyl groups can improve molecular interaction. Its superior robustness and purity make it suitable for applications involving harsh conditions or where analytical-grade materials are necessary.

Q: Where can UIO-66-COOH Powder be used effectively?

A: This MOF powder is widely employed in academic and industrial research labs, as well as in pilot-scale and specialized industrial processes. It is especially useful for gas adsorption, catalysis, separation mechanisms, sensor development, and exploratory drug delivery systems.

Q: How is UIO-66-COOH Powder typically synthesized?

A: UIO-66-COOH is produced through a solvothermal synthesis method, which combines zirconium salts and carboxyl-functionalized ligands under controlled temperature and solvent conditions. This process ensures high crystallinity and uniform pore structure in the powder.

Q: What makes the carboxyl (-COOH) functional group important in this MOF?

A: The carboxyl (-COOH) groups provide sites for enhanced molecular interaction and facilitate coordination with target species. This feature extends the MOF's utility in catalysis, targeted adsorption, and as a scaffold in sensor applications, offering unique advantages over unfunctionalized analogs.

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