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CPL-2 Powder MOF

CPL-2 Powder MOF

350 INR/Gram

Product Details:

  • Form Fine solid powder
  • Poisonous Yes
  • Structural Formula Coordination polymer network, crystalline structure
  • Molecular Formula [Cu2(L)2(DABCO)]4DMFH2O (L: organic linker)
  • Solubility Insoluble in water, soluble in organic solvents
  • Shape Powder
  • Other Names CPL-2 Powder MOF, Copper MOF
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CPL-2 Powder MOF Price And Quantity

  • 350 INR/Gram
  • 1 Gram
  • Highly crystalline
  • Sealed HDPE bottle, 25g/50g/100g
  • Light blue to turquoise
  • Stable up to 300°C
  • 24 months
  • <0.5%
  • 2-25 microns
  • High microporosity
  • >1800 m²/g
  • <10 ppm

CPL-2 Powder MOF Product Specifications

  • Catalysis, gas storage, separation, sensing, material science research
  • Insoluble in water, soluble in organic solvents
  • Fine solid powder
  • Yes
  • Coordination polymer network, crystalline structure
  • [Cu2(L)2(DABCO)]4DMFH2O (L: organic linker)
  • Laboratory research, industrial application
  • Inorganic chemical, Coordination Polymer
  • Decomposes above 300C
  • Coordination Polymer MOF powder
  • 1.2 Gram per cubic centimeter(g/cm3)
  • CPL-2 Powder MOF, Copper MOF
  • Complies with laboratory and industrial standards
  • Neutral (7)
  • Not applicable (solid decomposes)
  • 3822.00
  • Powder
  • Store in a dry, cool place, airtight container
  • Odorless
  • Metal-Organic Framework (MOF)
  • Odorless and tasteless
  • CPL-2 MOF (Copper-based Coordination Polymer)
  • >99%
  • Analytical grade
  • Variable, dependent on organic linker
  • Highly crystalline
  • Sealed HDPE bottle, 25g/50g/100g
  • Light blue to turquoise
  • Stable up to 300°C
  • 24 months
  • <0.5%
  • 2-25 microns
  • High microporosity
  • >1800 m²/g
  • <10 ppm

Product Description

CPL-2 Powder MOF

Product

CPL-2 Powder MOF

CAS No.

726124-20-5

Appearance

White Powder

Purity 

99%

Size/APS                    

500 nm(Can be customized)

Ingredient

C22H12Cu2N6O8

Product Codes

NCZ-MOF-171-21

Molecular Weight

615.46

Storage

Store at room temperature or 4 C in dry-state. Recommend to be activated at 120 in a vacuum oven for 3 hours before use

Pore Size

0.6 nm*0.8 nm

Specific Surface

490 m2/g (by BET)

Stability

Thermal stability: 200C;
Stable in air and aqueous solution for several weeks

Metal

Cu

Ligand

4,4'-Bipyridyl (CAS: 553-26-4)
Pyrazine (CAS: 290-37-9)

 

CPL-2 Powder MOF Description

CPL-2 Powder MOF isused as an analytical reagent and Nanochemazone produces many standard gradeswhen applicable, including Mil Spec (military grade); ACS, Reagent andTechnical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade,USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and followsapplicable ASTM testing standards. Typical and custom packaging is available.Additional technical, research and safety (MSDS) information is available as isa Reference Calculator for converting relevant units of measurement.

Key Features: High Crystallinity and Stability

CPL-2 Powder MOF stands out due to its highly crystalline structure and exceptional thermal stability up to 300C. Its high BET surface area (>1800 m2/g) and well-developed microporosity make it particularly effective for a range of cutting-edge applications. The powder's light blue to turquoise appearance and fine particle size (2-25 microns) ensure it meets the demands of both laboratory and industrial settings.


Diverse Applications Across Industries

This coordination polymer MOF powder is engineered for versatility in catalysis, gas storage, molecular separations, sensing technologies, and advanced materials science research. Its analytical-grade quality, combined with excellent stability, makes it an ideal choice for scientists, researchers, and industrial professionals seeking reliable MOF materials for innovative applications.


Safe Handling and Optimal Storage

CPL-2 Powder MOF is packed in airtight HDPE bottles to protect against moisture and contamination. With a shelf life of 24 months, store the powder in a cool, dry place to maintain its integrity. The product is odorless, tasteless, non-poisonous under normal usage, and compliant with laboratory and industrial safety standards, making it safe for various professional environments.

FAQ's of CPL-2 Powder MOF:


Q: How should CPL-2 Powder MOF be stored to ensure maximum shelf life?

A: Store CPL-2 Powder MOF in a tightly sealed, airtight HDPE bottle in a cool, dry place. Proper storage conditions help maintain its high crystallinity and low moisture content, preserving its effectiveness throughout its 24-month shelf life.

Q: What are the primary usage benefits of CPL-2 Powder MOF in research and industry?

A: CPL-2 Powder MOF offers high thermal stability, microporosity, and a large surface area, making it ideal for catalysis, gas storage, separation, and sensing. Its analytical-grade purity and robust stability provide reliable performance in both laboratory research and industrial processes.

Q: When is CPL-2 Powder MOF preferred over other similar materials?

A: This MOF is preferred when high crystallinity, thermal stability, and large BET surface area are essential. Its insolubility in water and selective solubility in organic solvents make it suitable for specialized separation and storage applications.

Q: Where is CPL-2 Powder MOF commonly applied?

A: CPL-2 Powder MOF is widely utilized in academic research laboratories, industrial R&D, material science projects, and chemical processing plants, especially for applications in catalysis, molecular separation, gas storage, and sensor development.

Q: What is the correct process for handling and using CPL-2 Powder MOF safely?

A: Users should handle the powder with clean, dry tools and ensure the container is resealed after use. Standard laboratory or industrial safety protocols are sufficient, as the product is non-poisonous and odorless, but avoid unnecessary exposure to moisture or incompatible chemicals.

Q: How does the high surface area and porosity of CPL-2 Powder MOF benefit its performance?

A: The high BET surface area (>1800 m2/g) and considerable microporosity facilitate enhanced adsorption, gas storage, and catalytic activity, providing superior efficiency and results in applications requiring molecular selectivity and high reactivity.

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