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Zn-ZIF-62 Powder MOF

Zn-ZIF-62 Powder MOF

550 INR/Gram

Product Details:

  • Molecular Weight ~255.6 g/mol (per two ligands)
  • Other Names Zinc ZIF-62, Zinc Imidazolate Framework-62
  • Purity >99%
  • Molecular Formula [Zn(Im)1.75(bIm)0.25] (Im = imidazolate, bIm = benzimidazolate)
  • Shape Fine powder
  • Boiling point Not applicable (decomposes before boiling)
  • Density 1.40 Gram per cubic centimeter(g/cm3)
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Zn-ZIF-62 Powder MOF Price And Quantity

  • 1 Gram
  • 550 INR/Gram

Zn-ZIF-62 Powder MOF Product Specifications

  • Zinc ZIF-62, Zinc Imidazolate Framework-62
  • Analytical, research grade
  • Gas separation, chemical sensing, catalysis, membrane fabrication, and adsorption studies
  • ~255.6 g/mol (per two ligands)
  • >99%
  • [Zn(Im)1.75(bIm)0.25] (Im = imidazolate, bIm = benzimidazolate)
  • In-house/Custom Synthesis, conforms to analytical grade
  • Fine powder
  • Not applicable (decomposes before boiling)
  • Zinc-based Zeolitic Imidazolate Framework (MOF)
  • 1.40 Gram per cubic centimeter(g/cm3)
  • Odorless, tasteless (not intended for ingestion)
  • 38249090
  • Odorless
  • Insoluble in water; soluble in certain organic solvents (e.g., DMF, DMSO)
  • Yes
  • Zn-ZIF-62
  • Solid powder
  • Neutral
  • 3D network with tetrahedrally coordinated Zn(II) by imidazolate and benzimidazolate linkers
  • Research, industrial applications, membrane studies
  • Coordination polymer / MOF
  • Store in airtight containers, dry, cool place, away from moisture
  • ~435 C (amorphous melting)
  • Metal-Organic Framework (MOF) Powder
  • 24 months under recommended storage conditions
  • <10 m
  • Resistant to mild hydrothermal conditions
  • Stable up to melting transition (~435 C)
  • Sealed vial or airtight bottle
  • Amorphous to semi-crystalline as per sample preparation
  • White to off-white
  • High (specific surface area up to 350 m/g)

Product Description

Zn-ZIF-62 PowderMOF

Product

Zn-ZIF-62  Powder MOF

CAS No.

1446434-44-1

Appearance

Off-white Powder

Purity 

99%

Size/APS                    

300 to 500 nm (Can be customized)

Ingredient

C28H26N16Zn4

Molecular Weight

848.17

Storage

Store at room temperature or 4 C in dry-state.

Stability

Thermal stability: >500C;

Metal

Zn

Product Code

NCZ-MOF-133-21

Ligand

Imidazole (CAS: 288-32-4): Benzimidazole (CAS: 51-17-2) =7: 1

 

Zn-ZIF-62 Powder MOF Description

Zn-ZIF-62Powder 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.



Advanced Materials for Gas Separation and Catalysis

Zn-ZIF-62 Powder's high porosity and large surface area enable efficient adsorption, making it an excellent candidate for gas separation processes and catalysis in research and industrial environments. Its unique structure allows for selective permeability and chemical sensing, supporting innovations in membrane and sensor technologies.


Stable and Reliable Performance in Challenging Conditions

This material is engineered for robustness, remaining stable up to its amorphous melting transition of approximately 435 C, while also demonstrating resistance to mild hydrothermal exposure. Its chemical structure ensures long-term stability, making it ideal for extended studies or processes requiring stringent thermal and hydrothermal endurance.


Safe, Versatile, and Easy to Handle

Zn-ZIF-62 is non-toxic, odorless, and tasteless, providing a safe option for laboratory and industrial handling. Its fine, free-flowing powder form allows for precise dosing in analytical applications. Proper storage in airtight containers ensures a shelf life of up to two years under recommended dry, cool conditions.

FAQ's of Zn-ZIF-62 Powder MOF:


Q: How should Zn-ZIF-62 Powder be stored for optimal shelf life?

A: Zn-ZIF-62 Powder should be kept in airtight containers stored in a cool, dry place away from moisture. Under these recommended conditions, the powder maintains its quality for up to 24 months.

Q: What makes Zn-ZIF-62 suitable for gas separation and adsorption studies?

A: The high porosity and specific surface area (up to 350 m2/g) of Zn-ZIF-62 facilitate efficient adsorption of gases, making it particularly useful for gas separation, membrane fabrication, and adsorption research applications.

Q: Where can Zn-ZIF-62 Powder be applied in research and industry?

A: This MOF is commonly used in fields such as chemical sensing, catalysis, gas separation, membrane development, and advanced adsorption studies, benefiting researchers, manufacturers, and industrial process developers.

Q: What is the recommended procedure for handling Zn-ZIF-62 Powder?

A: While Zn-ZIF-62 is non-toxic, it is advisable to handle the powder with care, using gloves in well-ventilated settings to avoid direct contact and inhalation. The powder is odorless and tasteless, but not intended for ingestion.

Q: Which solvents can dissolve Zn-ZIF-62 and which ones cannot?

A: Zn-ZIF-62 Powder is insoluble in water but soluble in certain organic solvents such as DMF (dimethylformamide) and DMSO (dimethyl sulfoxide), allowing flexibility in research protocols requiring dissolution.

Q: What are the structural and thermal stability characteristics of the product?

A: Zn-ZIF-62 possesses an amorphous to semi-crystalline framework, maintaining stability up to its melting point of approximately 435 C. It also resists decomposition under mild hydrothermal conditions, providing durability in various experimental settings.

Q: How does Zn-ZIF-62 benefit membrane and catalysis research?

A: The tunable structure and high surface area of Zn-ZIF-62 enhance membrane selectivity and catalytic efficiency, offering significant advantages for researchers developing advanced materials for gas filtration and chemical transformation.

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