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ED-MIL-101 (Cr) Powder MOF

ED-MIL-101 (Cr) Powder MOF

350 INR/Gram

Product Details:

  • Melting Point Decomposes before melting
  • Structural Formula Cr3F(H2O)2O(C9H3O6)2
  • Purity >99%
  • Other Names ED-MIL-101 (Cr) Powder
  • Density 0.32 Gram per cubic centimeter(g/cm3)
  • Molecular Weight 264.12 g/mol
  • Solubility Insoluble in water; soluble in some organic solvents
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ED-MIL-101 (Cr) Powder MOF Price And Quantity

  • 350 INR/Gram
  • 1 Gram
  • 2000-3500 m²/g (BET)
  • ~1.60 cm³/g
  • 10-100 nm
  • <1%
  • Green
  • Hydrothermal synthesis
  • Sealed HDPE bottle
  • Stable up to 300°C
  • 24 months
  • Not classified as hazardous
  • Non-regulated for transport

ED-MIL-101 (Cr) Powder MOF Product Specifications

  • 28429090
  • Neutral
  • Fine powder
  • Store in a cool, dry place under inert gas
  • Odorless, tasteless
  • Odorless
  • C9H3CrO6
  • Yes
  • Gas storage, catalysis, separation, adsorption, sensors, drug delivery research
  • Powder
  • Metal-Organic Framework (MOF)
  • Inorganic Compound
  • Research Grade
  • >99%
  • ED-MIL-101 (Cr) Powder
  • Industrial, scientific research, material science
  • Chromium(III) metal-organic framework
  • Decomposes before melting
  • MIL-101 (Cr)
  • Cr3F(H2O)2O(C9H3O6)2
  • Insoluble in water; soluble in some organic solvents
  • Analytical grade
  • 127539-16-8
  • 0.32 Gram per cubic centimeter(g/cm3)
  • 264.12 g/mol
  • 2000-3500 m²/g (BET)
  • ~1.60 cm³/g
  • 10-100 nm
  • <1%
  • Green
  • Hydrothermal synthesis
  • Sealed HDPE bottle
  • Stable up to 300°C
  • 24 months
  • Not classified as hazardous
  • Non-regulated for transport

Product Description

ED-MIL-101 (Cr)Powder MOF

Product

ED-MIL-101 (Cr) Powder MOF

CAS No.

1041469-06-0

Appearance

Grey-green Powder

Purity

99%

Size/APS

200-500 nm (Can be customized)

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

Ingredient

C26H20Cr3FN2O13

Specific Surface

1800-2000 m2/g (by BET)

Molecular Weight

743.43

Pore Volume

2.0 cm3/g

Pore Size

Window size: 1.2-1.6 nm; pore size: 2.9-3.4 nm

Product Code

NCZ-MOF-145-21

Stability

Thermal stability: > 300C;
Stable in air, aqueous, acid and basic solution (PH 1-12)

Metal

Cr

Ligand

Monosodium 2-Sulfoterephthalate (CAS: 19089-60-2)

 

ED-MIL-101 (Cr) Powder MOF Description

ED-MIL-101 (Cr) MOF isused as an analytical reagent and Nanochemazone produces many standard gradeswhen applicable, including Mil Spec (military grade); ACS, Reagent andTechnical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade,USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and followsapplicable ASTM testing standards. Typical and custom packaging is available.Additional technical, research and safety (MSDS) information is available as isa Reference Calculator for converting relevant units of measurement.

Outstanding Surface Area and Porosity

ED-MIL-101 (Cr) Powder MOF offers a remarkable specific surface area between 2000-3500 m2/g (BET) and a significant pore volume of ~1.60 cm3/g. These characteristics enable superior gas adsorption, separation performance, and catalytic efficiency, making it highly suitable for advanced research and industrial applications in fields such as gas storage and chemical sensing.


Thermal Stability and Safe Handling

This MOF remains stable up to 300C and is classified as non-toxic and non-hazardous, ensuring safety during handling and experimentation. Packaged in sealed HDPE bottles and boasting a long shelf life of 24 months, it maintains its quality under recommended storage conditions and does not require special transport measures, facilitating straightforward logistics.


Diverse Applications Across Research and Industry

ED-MIL-101 (Cr) Powder MOF is widely used in areas such as gas storage, catalysis, separation technologies, adsorption research, sensors, and drug delivery studies. Its high purity, neutral pH, and fine powder form make it ideal for analytical research, industrial processing, and material science innovation. This versatility caters to manufacturers, suppliers, and scientists alike.

FAQ's of ED-MIL-101 (Cr) Powder MOF:


Q: How should ED-MIL-101 (Cr) Powder MOF be stored to maintain its quality?

A: For optimal stability and performance, store ED-MIL-101 (Cr) Powder MOF in a cool, dry location under an inert gas atmosphere, inside its original sealed HDPE bottle. Proper storage helps retain its moisture content below 1% and extends its shelf life up to 24 months.

Q: What is the synthesis method used for producing ED-MIL-101 (Cr) Powder MOF?

A: This metal-organic framework is produced using hydrothermal synthesis, which facilitates the formation of high-surface-area, nanoporous structures essential for advanced catalysis, adsorption, and separation applications.

Q: When is ED-MIL-101 (Cr) Powder MOF typically used in research and industry?

A: It is primarily utilized during advanced research and industrial processes where high surface area, porosity, and thermal stability are critical. Common fields include gas storage, catalysis, separation science, sensor development, and drug delivery research.

Q: Where can ED-MIL-101 (Cr) Powder MOF be applied for optimal benefit?

A: The powder is most beneficial in laboratories and facilities engaged in material science, gas adsorption studies, catalysis development, and sensor technology, owing to its superior structural and thermal properties.

Q: What handling and transport precautions are required for this MOF powder?

A: ED-MIL-101 (Cr) Powder MOF is non-toxic, odorless, and non-hazardous under standard use. It is considered non-regulated for transport, so no special handling or shipping requirements are necessary, simplifying logistics for dealers, exporters, researchers, and manufacturers.

Q: How does the high surface area and pore volume benefit application performance?

A: The large surface area (2000-3500 m2/g) and substantial pore volume (~1.60 cm3/g) enhance adsorption capacity, promote faster reaction kinetics in catalysis, and improve separation efficiency, contributing to advanced material performance in scientific and industrial settings.

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