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MIL-53 (Cr) Powder MOF

MIL-53 (Cr) Powder MOF

550 INR/Gram

Product Details:

  • Smell Odorless
  • Density 1.9 Gram per cubic centimeter(g/cm3)
  • Solubility Insoluble in water, soluble in certain organic solvents
  • Purity >99%
  • Form Powder
  • Poisonous Yes
  • Shape Crystalline Powder
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MIL-53 (Cr) Powder MOF Price And Quantity

  • 550 INR/Gram
  • 1 Gram
  • >1500 m/g
  • Typically <10 m
  • Hydrothermal synthesis
  • No significant hazards, standard laboratory precautions recommended
  • Low, environmentally benign for research use only
  • Green
  • Low to moderate
  • Highly crystalline
  • Stable under ambient conditions
  • Use personal protective equipment, avoid inhalation
  • ~8.5
  • Available on request
  • 2 years from date of manufacture
  • Non-hazardous, ships as standard chemical cargo
  • Sealed HDPE bottles

MIL-53 (Cr) Powder MOF Product Specifications

  • Analytical/Research Grade
  • Not applicable; decomposes
  • Store in a cool, dry place, tightly sealed, avoid humidity
  • 38249990
  • 3D Framework based on Chromium nodes and Terephthalic acid (BDC) linkers
  • 222.15 g/mol
  • Laboratory and industrial research purposes
  • [Cr(OH)(C8H4O4)]
  • Complies with laboratory synthesis standards
  • Neutral
  • Decomposes before melting
  • MIL-53 (Chromium), Chromium MOF-53, MIL-53(Cr)
  • Odorless
  • Powder
  • Crystalline Powder
  • Yes
  • Metal-Organic Framework (MOF) Powder
  • Insoluble in water, soluble in certain organic solvents
  • MIL-53 (Cr) Metal-Organic Framework
  • Gas storage, gas separation, catalysis, sensors, adsorption, research
  • >99%
  • 250448-98-5
  • Inorganic Chemicals / Coordination Polymers
  • Chromium terephthalate MOF
  • 1.9 Gram per cubic centimeter(g/cm3)
  • Odorless
  • >1500 m/g
  • Typically <10 m
  • Hydrothermal synthesis
  • No significant hazards, standard laboratory precautions recommended
  • Low, environmentally benign for research use only
  • Green
  • Low to moderate
  • Highly crystalline
  • Stable under ambient conditions
  • Use personal protective equipment, avoid inhalation
  • ~8.5
  • Available on request
  • 2 years from date of manufacture
  • Non-hazardous, ships as standard chemical cargo
  • Sealed HDPE bottles

Product Description

MIL-53 (Cr) PowderMOF

Product

MIL-53 (Cr) Powder MOF

CAS No.

442912-79-0

Appearance

Powder

Purity 

99%

Size/APS                    

300-600nm (Can be customized)

Ingredient

C8H5CrO5

Molecular Weight

233.12

Product Codes

NCZ-MOF-146-21

Storage

 

 

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

Stability

Thermal stability: > 300C;
Stable in air, aqueous and acid solution

Pore Size

After activated 8.6 8.6 or 9.4 11.4

Metal

Cr

Ligand

Terephthalic acid (CAS: 100-21-0)

 

ED-MIL-101 (Cr) Powder MOF Description

ED-MIL-101 (Cr)Powder 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 Stability and Performance

MIL-53 (Cr) Powder stands out for its robust stability under ambient conditions and high crystallinity, ensuring reliability in varied research and industrial scenarios. Its large surface area and uniform pore size facilitate efficient gas storage and separation, making it a preferred choice for advanced adsorption and catalysis projects.


Versatile Research Applications

This chromium-based MOF is ideal for applications including gas storage, gas separation, catalysis, sensor development, and adsorption experiments. Researchers benefit from its highly porous 3D framework, allowing exploration of innovative solutions in both academic and industrial laboratories.


Safe and Environmentally Friendly Handling

MIL-53 (Cr) is classified as non-toxic and environmentally benign for research use. It poses no significant hazards under standard laboratory practices, ships as a non-hazardous chemical, and its MSDS is readily available upon request. Proper storage and handling ensure optimal sample integrity and safety.

FAQ's of MIL-53 (Cr) Powder MOF:


Q: How should MIL-53 (Cr) Powder MOF be stored for optimal stability?

A: Store the powder in a tightly sealed container, preferably the original HDPE bottle, in a cool, dry place away from humidity to ensure the material remains stable throughout its two-year shelf life.

Q: What is the recommended method for handling MIL-53 (Cr) in the laboratory?

A: Always use personal protective equipment, including gloves and a lab coat, and avoid inhaling the powder. Although it is non-toxic and has no significant hazards, standard laboratory precautions should be followed.

Q: Where can MIL-53 (Cr) Powder be used most effectively?

A: This MOF is best used in laboratory and industrial research settings for applications like gas storage, separation, catalysis, sensor development, and adsorption studies due to its high surface area and robust crystalline structure.

Q: What benefits does MIL-53 (Cr) Powder offer for gas storage and separation research?

A: Its large BET surface area (>1500 m2/g) and uniform pore size (~8.5 A) enable efficient adsorption and separation of gases, making it highly valuable for experimental and applied research in material science and chemical engineering.

Q: Is MIL-53 (Cr) Powder environmentally safe and how is it transported?

A: MIL-53 (Cr) is considered environmentally benign at research scale and is non-hazardous for transport. It is shipped as standard chemical cargo in sealed, protective packaging for safe delivery.

Q: Can MIL-53 (Cr) be dissolved in common solvents?

A: The powder is insoluble in water but may dissolve in certain organic solvents. This property should be considered when designing experiments or formulating processes involving MIL-53 (Cr).

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