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Tin Metal Organic Framework

Tin Metal Organic Framework

Product Details:

  • Melting Point Varies by specific framework; base tin ~231.9C
  • Boiling point Decomposes before boiling
  • Particle Size 50-100 nm
  • Usage & Applications Catalysis, Gas Storage, Sensing, Adsorption, Separation
  • Metal Type Tin (Sn)
  • Grade Analytical Grade
  • Purity(%) >99%
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Tin Metal Organic Framework Price And Quantity

Tin Metal Organic Framework Product Specifications

  • Tin (Sn)
  • 1.8 Gram per cubic centimeter(g/cm3)
  • Analytical Grade
  • >99%
  • Varies by specific framework; base tin ~231.9C
  • Tin-based Metal Organic Framework (Sn-MOF)
  • Customizable
  • Yellowish White
  • Decomposes before boiling
  • 50-100 nm
  • N/A (powder form)
  • As required
  • Catalysis, Gas Storage, Sensing, Adsorption, Separation
  • Tin
  • Metal Organic Framework
  • Powder

Tin Metal Organic Framework Trade Information

  • Paypal, Western Union, Telegraphic Transfer (T/T), Cash in Advance (CID), Cheque, Cash Advance (CA)
  • 50000 , Per Year
  • 7 Week
  • Australia, South America, Eastern Europe, Western Europe, Middle East, Central America, Africa, Asia, North America
  • All India

Product Description

Specification

Product Name

Tin Metal Organic Framework

Stock No.

NCZMOF109

CAS

7440-31-5

Purity

99%

APS

30-40m

Molecular Formula

N/A

Molecular Weight

150.71 g/mol

Odour

Odorless

Color

Blue-black

Density

6.95 g/cm

Pore Size

~12.68

SSA

40-80m2/g (BET)

Crystallographic Structure

Tetrahedron

Solubility

Methanol

Application

Gas storage and Sensor application





Customizable Structure and Composition

Tin-based Metal Organic Frameworks can be tailored for specific applications, with options to modify topology, pore size, and particle dimensions. This versatility ensures optimal performance in catalysis, sensing, adsorption, and separation projects. With a chemical purity over 99% and analytical grade quality, these MOFs provide reliability and reproducibility for research and industrial use.


Exceptional Surface Area and Porosity

The frameworks high BET surface area (5002200 m/g) and pores (1.24.5 nm) enable effective gas adsorption and storage. Their three-dimensional porous networks enhance mass transfer properties, making them suitable for demanding separation techniques and catalytic processes.


Safe Handling and Long-lasting Stability

Sn-MOFs are stable under standard laboratory conditions but should be handled with careavoid moisture, strong acids, inhalation, and direct contact. When stored in a sealed, cool, and dry environment, they maintain analytical integrity for up to two years. For safety, always reference the product MSDS.

FAQs of Tin Metal Organic Framework:


Q: How should I store Tin Metal Organic Framework (Sn-MOF) powder for maximum shelf life?

A: For optimal longevity, store the Sn-MOF powder in a tightly sealed container, away from moisture and strong acids, in a cool, dry environment. Following these conditions ensures a shelf life of up to two years.

Q: What are the typical applications of Tin-based Metal Organic Frameworks?

A: Sn-MOFs find use in catalysis, gas storage, chemical sensing, selective adsorption, and molecular separation, thanks to their high surface area, customizable pore sizes, and excellent stability.

Q: When is it appropriate to use Tin-MOFs instead of other MOFs?

A: Tin-MOFs are ideal when tins unique catalytic properties, high surface area, or specific framework structures are required for your application, such as in advanced catalysis or precision gas separation tasks.

Q: Where are Tin-MOFs typically manufactured and supplied?

A: These MOFs are produced, exported, imported, and wholesaled by various suppliers, predominantly in India, but may be sourced globally depending on supplier networks.

Q: What is the recommended process for handling Tin Metal Organic Frameworks safely?

A: Wear appropriate personal protective equipment, work in a well-ventilated space, and avoid inhaling dust or contact with skin and eyes. Consult the MSDS for comprehensive safety guidance.

Q: How do the customizable properties of Sn-MOFs benefit industrial and research applications?

A: Customizable pore sizes, particle dimensions, and framework structures allow Sn-MOFs to be precisely tailored to meet the specific needs of each project, maximizing effectiveness in catalysis, sensing, separation, and adsorption.

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