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COF-LZU-1 MOF

COF-LZU-1 MOF

650 INR/Gram

Product Details:

  • Density 0.35 Gram per cubic centimeter(g/cm3)
  • Structural Formula Based on 1,3,5-Triformylbenzene and P-phenylenediamine units
  • Smell Odorless
  • Molecular Weight 702.8 g/mol
  • Shape Powder or crystalline solid
  • Poisonous Yes
  • Solubility Insoluble in water, soluble in some organic solvents
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COF-LZU-1 MOF Price And Quantity

  • 1 Gram
  • 650 INR/Gram

COF-LZU-1 MOF Product Specifications

  • Yes
  • Insoluble in water, soluble in some organic solvents
  • Gas storage, catalysis, sensor, separation, energy storage
  • Powder or crystalline solid
  • Organic framework (COF)
  • COF-LZU-1
  • 702.8 g/mol
  • Laboratory standard
  • Odorless
  • Crystalline porous material
  • 0.35 Gram per cubic centimeter(g/cm3)
  • Covalent Organic Framework (COF)
  • Based on 1,3,5-Triformylbenzene and P-phenylenediamine units
  • LZU-1 COF
  • 38249900
  • Store in a cool, dry place in a tightly sealed container
  • C48H30N6
  • Neutral
  • Scientific research, material science
  • >99%
  • Odorless and tasteless
  • Solid
  • Not applicable (decomposes before melting)
  • Analytical/Laboratory Grade
  • Solvothermal synthesis
  • Highly crystalline
  • ~1.5 nm
  • Imine-linked (Schiff base) framework
  • High, with surface area up to 700 m/g
  • Stable in air
  • Yellow or light beige
  • Stable up to ~400C under inert atmosphere
  • Typically <100 m

Product Description

COF-LZU-1MOF

Product          

COF-LZU-1  Powder MOF

CAS No.        

1242082-12-7

Appearance

Yellow Powder

Purity 

99%

Size/APS                    

500 nm-2 m(Can be customized)

Ingredient

C9H6O3.C6H8N2

Product Code

NCZ-MOF-1164-21

Molecular Weight

270.28

Storage

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

Pore Size

1.2-1.8 nm

Specific Surface

710 m2/g (by BET)

Stability

Thermal stability: 50C for 48 h

 

COF-LZU-1 MOF Description

COF-LZU-1 MOF is usedas an analytical reagent and Nanochemazone produces many standard grades whenapplicable, including Mil Spec (military grade); ACS, Reagent and TechnicalGrade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP andEP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTMtesting standards. Typical and custom packaging is available. Additionaltechnical, research and safety (MSDS) information is available as is aReference Calculator for converting relevant units of measurement.

Outstanding Porosity and Surface Area

COF-LZU-1 offers a remarkable combination of high porosity and significant surface area (up to 700 m2/g), ideal for tasks like gas adsorption and storage, as well as catalytic applications. This makes it a sought-after material for researchers and industries focused on advanced molecular separation, sensing, and energy storage solutions.


Exceptional Chemical and Thermal Stability

With imine-linked (Schiff base) frameworks, COF-LZU-1 demonstrates excellent stability in air and can withstand temperatures as high as 400C under inert atmospheres. This resilience makes it suitable for demanding laboratory and industrial applications requiring robust materials that do not degrade easily.


Versatile Scientific Applications

The versatility of COF-LZU-1 allows for its use in numerous scientific research fields, including catalysis, gas storage, and sensor technology. Its consistent particle size (typically <100 m) and high purity facilitate repeatability and reliability in diverse experiments and material synthesis projects.

FAQ's of COF-LZU-1 MOF:


Q: How is COF-LZU-1 typically synthesized?

A: COF-LZU-1 is generally prepared using a solvothermal synthesis process, which involves reacting 1,3,5-Triformylbenzene and P-phenylenediamine in a suitable organic solvent under controlled temperature and pressure, promoting the formation of highly crystalline, imine-linked frameworks.

Q: What are the key benefits of using COF-LZU-1 in scientific research?

A: COF-LZU-1's high surface area, uniform pore structure (~1.5 nm), and excellent chemical stability offer substantial advantages for gas storage, catalysis, sensing, and separation. Its analytical-grade quality and non-toxic nature further enhance its value for advanced research and material science.

Q: When is COF-LZU-1 most effectively used in industrial applications?

A: COF-LZU-1 performs best in situations that demand highly porous, thermally stable materials, such as high-efficiency gas storage systems, selective adsorbents for separation processes, or as a stable platform for catalysis and sensor devices.

Q: Where should COF-LZU-1 be stored to maintain its stability?

A: To preserve its high crystallinity and chemical integrity, COF-LZU-1 should be stored in a cool, dry place within a tightly sealed container, away from sources of moisture and contaminants.

Q: What precautions should be taken during the use or handling of COF-LZU-1?

A: While COF-LZU-1 is non-toxic under normal conditions and stable in air, it is advisable to handle it using standard laboratory safety protocols. Its powdered form may pose inhalation risks if dispersed, so using gloves and respiratory protection is recommended during large-scale handling.

Q: How does the porous structure of COF-LZU-1 improve its utility in gas storage?

A: The highly porous architecture, combined with a substantial internal surface area, enables COF-LZU-1 to capture and store significant volumes of gases efficiently, making it especially valuable for gas adsorption and selective separation processes.

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