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MOF-5 Powder MOF

MOF-5 Powder MOF

650 INR/Gram

Product Details:

  • Form Fine powder
  • Storage Store in a cool, dry, and air-tight container; protect from moisture
  • Other Names MOF-5, IRMOF-1, Zn4O(BDC)3
  • Molecular Weight 779.0 g/mol
  • Density 0.59 Gram per cubic centimeter(g/cm3)
  • Taste Not determined
  • Structural Formula [Zn4O(BDC)3], where BDC = 1,4-benzenedicarboxylate
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MOF-5 Powder MOF Price And Quantity

  • 1 Gram
  • 650 INR/Gram
  • Sealed bottle, custom packing on request
  • Highly porous material
  • 24 months under recommended storage conditions
  • 1-10 µm (customizable on request)
  • Stable up to 350°C under inert atmosphere
  • White to pale yellow
  • Within 7-10 days after order confirmation
  • >3000 m²/g (BET Surface Area)
  • Highly crystalline

MOF-5 Powder MOF Product Specifications

  • Analytical/Research Grade
  • Insoluble in water, soluble in organic solvents
  • Neutral (6-7 in aqueous suspension)
  • Metal-Organic Framework (MOF)
  • Zinc Terephthalate MOF
  • Odorless
  • 38249900
  • Decomposes before melting
  • Zinc nitrate and terephthalic acid (BDC)
  • Yes
  • 901767-84-6
  • Not applicable (solid)
  • Research, industrial, analytical applications
  • 779.0 g/mol
  • MOF-5, IRMOF-1, Zn4O(BDC)3
  • 0.59 Gram per cubic centimeter(g/cm3)
  • [Zn4O(BDC)3], where BDC = 1,4-benzenedicarboxylate
  • Not determined
  • >98%
  • C24H12O13Zn4
  • Powder
  • Metal Organic Framework Compound
  • Gas storage, gas separation, catalysis, sensors, drug delivery, research
  • Lab/industrial standard
  • Fine powder
  • Store in a cool, dry, and air-tight container; protect from moisture
  • Sealed bottle, custom packing on request
  • Highly porous material
  • 24 months under recommended storage conditions
  • 1-10 µm (customizable on request)
  • Stable up to 350°C under inert atmosphere
  • White to pale yellow
  • Within 7-10 days after order confirmation
  • >3000 m²/g (BET Surface Area)
  • Highly crystalline

Product Description

MOF-5 Powder MOF

Product

MOF-5  Powder MOF

CAS No.

255367-66-9

Appearance

White Powder

Purity 

99%

Size/APS                    

200 nm; 500 nm; 1 m; 5 m

Ingredient

C24H12O13Zn4

Molecular Weight

769.90

Product Code

NCZ-MOF-121-21

Storage

Store at room temperature or 4 C in dry-state. Recommend to be activated at 100 in a vacuum oven for 3 hours before use

Specific Surface

900 m2/g (by BET)

Pore Size

1.5 nm

Stability

Thermal stability: > 300C;
Stable in air for several weeks

Metal

Zn

Ligand

Terephthalic acid (CAS: 100-21-0)

 

MOF-5 Powder MOF Description

MOF-5Powder 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 Surface Area

MOF-5 Powder features a surface area exceeding 3000 m2/g (BET), making it ideal for demanding applications requiring high porosity. This unique structure enables efficient gas storage and separation, as well as enhanced catalytic activity. Its highly crystalline nature ensures uniform performance in analytical, research, and industrial processes.


Reliable Thermal and Chemical Stability

With thermal stability up to 350C under inert atmosphere, MOF-5 maintains its structural integrity in various challenging environments. The powder's neutral pH and non-toxic composition allow for safe handling and broader usage in diverse research and industrial settings. Decomposition occurs before melting, further indicating robust thermal resistance.


Versatile Applications and Customization

MOF-5 serves multiple fields, including catalysis, gas storage and separation, sensors, and drug delivery research. Supplied in particle sizes from 1-10 m (customizable upon request), and packaged to protect against moisture, it is easily integrated into laboratory protocols. Custom packing and rapid lead time (7-10 days) ensure tailored solutions for specialized needs.

FAQ's of MOF-5 Powder MOF:


Q: How should MOF-5 Powder be stored for maximum shelf life?

A: Store MOF-5 Powder in a cool, dry, and airtight container, protected from moisture. When stored under these conditions, the powder retains its properties for up to 24 months.

Q: What are the main benefits of using MOF-5 Powder in research and industrial applications?

A: MOF-5 Powder offers exceptionally high surface area and porosity, enabling effective gas storage, separation, catalysis, and sensor development. Its thermal stability and customizable particle size further enhance application flexibility.

Q: When is customized particle size packaging available for MOF-5 Powder?

A: Customized particle sizes (1-10 m) and packing options can be requested during order placement. Orders are typically fulfilled within 7-10 days after confirmation, including custom requests.

Q: Where can MOF-5 Powder be applied most effectively?

A: MOF-5 Powder is highly effective in gas storage systems, gas separation membranes, catalytic reactions, chemical sensors, and emerging drug delivery research, both in laboratories and industrial-scale projects.

Q: What is the recommended process for handling MOF-5 Powder safely?

A: Although MOF-5 is non-poisonous, standard laboratory safety protocols should be followed: use gloves, avoid inhaling powder, and handle in a well-ventilated environment to ensure safe handling during research or manufacturing.

Q: How is MOF-5 Powder manufactured and what is its chemical composition?

A: MOF-5 Powder is synthesized by combining zinc nitrate and terephthalic acid (BDC), forming a highly crystalline zinc-based metal-organic framework with the formula [Zn4O(BDC)3].

Q: What advantages does MOF-5 Powder offer over conventional materials?

A: MOF-5's extraordinary surface area, porosity, and thermal stability provide significant advantages for applications demanding high-performance materials, including efficient catalysis, selective gas adsorption, and advanced analytical research.

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