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MIL-101(Al)-NH2 Powder MOF

MIL-101(Al)-NH2 Powder MOF

650 INR/Gram

Product Details:

  • Melting Point Decomposes before melting
  • Solubility Insoluble in water; soluble in some organic solvents
  • HS Code 382499
  • Purity >99%
  • Boiling point Not applicable; decomposes
  • Taste Odorless
  • Structural Formula Based on Al(OH), BDC-NH2 linkage
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MIL-101(Al)-NH2 Powder MOF Price And Quantity

  • 1 Gram
  • 650 INR/Gram
  • High
  • Yellow to light brown
  • NH2 (amino) functionalized
  • High surface area (>2000 m²/g)
  • Sealed bottles, inert atmosphere
  • <100 nm to micron range
  • Stable up to 300°C
  • 2 years under recommended storage

MIL-101(Al)-NH2 Powder MOF Product Specifications

  • [Al(OH)(BDC-NH2)]n (where BDC-NH2 is 2-amino-terephthalic acid)
  • Powder
  • Store in cool, dry place, avoid moisture and direct sunlight
  • Solid
  • MIL-101(Al)-NH2 (Metal-Organic Framework)
  • 0.7 Gram per cubic centimeter(g/cm3)
  • Neutral
  • Adsorption, catalysis, environmental treatment, sensor fabrication
  • Complies with laboratory and industrial standards
  • Odorless
  • Yes
  • MOF (Metal-Organic Framework) Powder
  • Amino-functionalized MIL-101(Al), MIL-101(Al)NH2
  • Based on Al(OH), BDC-NH2 linkage
  • Gas storage, separation, catalysis, sensing, environmental remediation
  • Odorless
  • Inorganic MOF Compound
  • Approx. 343.12 g/mol (monomer unit)
  • Insoluble in water; soluble in some organic solvents
  • MIL-101(Al)-NH2
  • Decomposes before melting
  • Not applicable; decomposes
  • Research/Industrial Grade
  • 382499
  • >99%
  • High
  • Yellow to light brown
  • NH2 (amino) functionalized
  • High surface area (>2000 m²/g)
  • Sealed bottles, inert atmosphere
  • <100 nm to micron range
  • Stable up to 300°C
  • 2 years under recommended storage

Product Description

MIL-101(Al)-NH2Powder MOF

Product

MIL-101(Al)-NH2 Powder MOF

CAS No.

1404201-64-4

Appearance

Yellow solid Powder

Purity 

99%

Size/APS                    

0.1-1.0 m (Can be customized)

Ingredient

C24H19Al3ClN3O15

Product Codes

NCZ-MOF-161-21

Molecular Weight

705.81

Specific Surface

2000-3000 (BET) m2/g

Stability

Air sensitive

 

MIL-101(Al)-NH2  Powder MOF Description

MIL-101(Al)-NH2  Powder MOF is used as an analytical reagentand Nanochemazone produces many standard grades when applicable, including Mil Spec(military grade); ACS, Reagent and Technical Grade; Food, Agricultural andPharmaceutical Grade; Optical Grade, USP and EP/BP (EuropeanPharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testingstandards. Typical and custom packaging is available. Additional technical,research and safety (MSDS) information is available as is a ReferenceCalculator for converting relevant units of measurement.

Exceptional Surface Area for Enhanced Applications

MIL-101(Al)-NH2 stands out due to its high specific surface area exceeding 2000 m2/g, enabling superior adsorption and catalytic efficiency. The MOF's substantial porosity and amino functionality provide enhanced interaction with a variety of molecules, making it suitable for demanding applications such as gas storage, environmental remediation, and advanced catalysis.


Robust Thermal and Chemical Stability

Engineered for resilience, MIL-101(Al)-NH2 maintains structural integrity up to 300C and exhibits high chemical stability under laboratory conditions. This robust nature allows for deployment in diverse industrial processes, even those requiring elevated temperatures, and ensures long shelf life when stored properly.


Reliable Packing and Storage

Each batch of MIL-101(Al)-NH2 Powder is packaged in sealed bottles under inert atmosphere, guaranteeing product purity and stability during transit and storage. For optimal longevity, it should be kept in a cool, dry environment, away from direct sunlight and moisture, assuring consistent performance over its two-year shelf life.

FAQ's of MIL-101(Al)-NH2 Powder MOF:


Q: How should MIL-101(Al)-NH2 Powder be stored to maximize its shelf life?

A: Store MIL-101(Al)-NH2 Powder in a cool, dry place, away from moisture and direct sunlight. Keep the powder sealed in its original inert-atmosphere bottle to maintain its high purity and stability. Under recommended storage conditions, the material has a shelf life of up to two years.

Q: What are the main applications of MIL-101(Al)-NH2 Powder?

A: MIL-101(Al)-NH2 Powder is commonly used for gas storage, gas separation, catalysis, sensing, and environmental remediation. Its high surface area and NH2 functionalization contribute to enhanced adsorption capacity and selectivity, making it suitable for both research and industrial purposes.

Q: When is MIL-101(Al)-NH2 preferred over non-functionalized MOFs?

A: MIL-101(Al)-NH2 is preferred when amino functionalities are needed to improve specific interactions, such as in selective adsorption, catalysis involving amine groups, or targeted environmental remediation tasks where functionalized surfaces offer greater efficiency.

Q: Where can MIL-101(Al)-NH2 be employed within environmental technology?

A: This MOF is utilized in environmental technologies for pollutant adsorption, gas purification, and waste treatment due to its high porosity and chemical stability. It aids in capturing volatile organic compounds and heavy metal ions, improving air and water quality in industrial and municipal applications.

Q: What process is used to synthesize MIL-101(Al)-NH2 Powder?

A: MIL-101(Al)-NH2 is typically synthesized via solvothermal methods, where aluminum salts react with 2-amino-terephthalic acid (BDC-NH2) under controlled conditions to yield a highly crystalline MOF with uniform particle size.

Q: How is MIL-101(Al)-NH2 applied in catalysis?

A: The high surface area and amino functional groups of MIL-101(Al)-NH2 provide active sites for catalyzing a variety of chemical reactions, including organic conversions and decomposition of pollutants, thereby increasing efficiency and product yield in laboratory and industrial catalytic processes.

Q: What are the key benefits of using MIL-101(Al)-NH2 Powder in industrial or research settings?

A: Key benefits include its high porosity for excellent adsorption, robust thermal and chemical stability, non-toxicity, and customizable surface chemistry via amino functionalization. These features make it a reliable and versatile material for scientific study and practical applications alike.

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