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DUT-8 (Cu) Powder MOF

DUT-8 (Cu) Powder MOF

550 INR/Gram

Product Details:

  • Structural Formula Coordination polymer: Cu2(ndc)2(dabco)
  • Form Fine powder
  • Other Names DUT-8 (Cu), MOF-8, Copper naphthalene dicarboxylate MOF
  • Purity >99%
  • Density 0.90 Gram per cubic centimeter(g/cm3)
  • Smell Odorless
  • Poisonous Yes
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DUT-8 (Cu) Powder MOF Price And Quantity

  • 550 INR/Gram
  • 1 Gram
  • Monoclinic, flexible framework structure
  • Sealed bottles or vials, inert gas packing optional
  • Stable up to 250C in inert atmosphere
  • Solvent exchange (e.g., methanol) and evacuation
  • 1400-1600 m/g (open pore form, depending on activation)
  • Blue-green
  • 10 100 microns (typical)
  • 8.6 x 11.3 (open form)
  • Sensitive to moisture and acidic/basic vapors

DUT-8 (Cu) Powder MOF Product Specifications

  • Insoluble in water; stable under dry, neutral conditions
  • Yes
  • Powder
  • Metal-Organic Framework (MOF)
  • 0.90 Gram per cubic centimeter(g/cm3)
  • Odorless
  • Industrial/research standard
  • >99%
  • Not assigned
  • Copper-based Metal-Organic Framework (MOF)
  • Analytical/Laboratory grade
  • Fine powder
  • Coordination polymer: Cu2(ndc)2(dabco)
  • DUT-8 (Cu), MOF-8, Copper naphthalene dicarboxylate MOF
  • Porous coordination polymer, MOF
  • Decomposes before melting
  • Approx. 673 g/mol (per formula unit)
  • [Cu2(ndc)2(dabco)] (ndc = 2,6-naphthalenedicarboxylate, dabco = 1,4-diazabicyclo[2.2.2]octane)
  • Keep tightly sealed, store in cool, dry place, protect from moisture
  • N/A (insoluble in water)
  • Not applicable (solid, decomposes upon heating)
  • DUT-8 (Cu), Copper(II) 2,6-naphthalenedicarboxylate
  • 38249900
  • Gas storage, separation, catalysis, adsorption, sensors, research
  • Laboratory research, industrial applications
  • Odorless, tasteless (not for consumption)
  • Monoclinic, flexible framework structure
  • Sealed bottles or vials, inert gas packing optional
  • Stable up to 250C in inert atmosphere
  • Solvent exchange (e.g., methanol) and evacuation
  • 1400-1600 m/g (open pore form, depending on activation)
  • Blue-green
  • 10 100 microns (typical)
  • 8.6 x 11.3 (open form)
  • Sensitive to moisture and acidic/basic vapors

Product Description

DUT-8 (Cu) PowderMOF

Product

DUT-8 (Cu) Powder MOF

CAS No.

916314-54-0

Appearance

Powder

Purity 

99%

Size/APS                    

300-600 nm (Can be customized)

Ingredient

C30H24Cu2N2O8

Product Codes

NCZ-MOF-175-21

Molecular Weight

667.61

Metal

Cu

 

DUT-8 (Cu) Powder MOF Description

DUT-8(Cu) Powder MOF is used as an analytical reagent and Nanochemazone producesmany standard 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.



Flexible Porosity for Advanced Applications

DUT-8 (Cu) Powder's adaptable framework enables high levels of porosity, making it suitable for a range of laboratory and industrial purposes. Its unique pore structure and flexibility allow reversible switching between open and closed forms, providing efficient pathways for adsorption, separation, and gas storage.


Optimal Stability and Handling

This MOF is best preserved when tightly sealed and stored in a dry, cool place, as it is sensitive to moisture and chemical vapors. Thermal stability up to 250C in inert atmospheres supports its use in demanding research environments. Proper activation by solvent exchange and evacuation ensures maximal surface area.


Wide-Ranging Laboratory and Industrial Use

With a high purity (>99%) and customizable particle size, DUT-8 (Cu) is valued in analytical, catalytic, and sensor-based applications. The powder's versatile structure and reliability make it indispensable in studies related to adsorption, gas separation, and cutting-edge materials research.

FAQ's of DUT-8 (Cu) Powder MOF:


Q: How should DUT-8 (Cu) Powder be stored to maintain its performance?

A: DUT-8 (Cu) should be kept tightly sealed in a cool, dry place, away from moisture and chemical vapors. Using inert gas packing when available and storing in sealed bottles or vials helps maintain its structural integrity and porosity.

Q: What is the typical process for activating DUT-8 (Cu) Powder before use?

A: Activation typically involves a solvent exchange with methanol or similar solvents, followed by thorough evacuation to remove solvents from the pores. This procedure ensures the framework attains its maximum BET surface area for applications.

Q: Where is DUT-8 (Cu) Powder commonly utilized?

A: The powder is widely used in laboratory research, especially in gas storage, separation, sensing, catalysis, and adsorption studies. Its adaptable pore structure makes it valuable in both academic and industrial research settings.

Q: How does the flexible framework of DUT-8 (Cu) benefit its applications?

A: The structure's reversible switching between open and closed pore forms allows for selective adsorption and controlled release, enhancing performance in gas storage, separation, and sensor technologies.

Q: When is moisture sensitivity most critical for DUT-8 (Cu) Powder?

A: Moisture sensitivity is most crucial during storage and handling. Exposure to humid environments or acidic/basic vapors may compromise the powder's framework and reduce its adsorption efficiency, so precautions must be taken at all times.

Q: What are the main usage advantages of DUT-8 (Cu) over conventional adsorbents?

A: DUT-8 (Cu) offers a combination of high surface area, selectivity, and structural adaptability, making it more effective for specialized applications in gas separation, storage, and catalysis compared to many traditional adsorbents.

Q: Is DUT-8 (Cu) Powder safe to handle in the laboratory?

A: Although not classified as poisonous, it should be treated as a potentially harmful laboratory chemical. Use appropriate personal protective equipment and follow standard laboratory safety protocols during handling and disposal.

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