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CTF-1 MOF

CTF-1 MOF

350 INR/Gram

Product Details:

  • Smell Odorless
  • Density 0.35 Gram per cubic centimeter(g/cm3)
  • Ph Level Neutral
  • Molecular Weight Variable (polymer)
  • Other Names CTF-1
  • Boiling point Not applicable (polymeric solid)
  • Structural Formula Polymetric triazine-based structure
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CTF-1 MOF Price And Quantity

  • 350 INR/Gram
  • 1 Gram
  • Sealed HDPE bottle
  • Yellow
  • Chemically and thermally robust
  • Stable above 500°C
  • >1400 m2/g
  • 2 years under recommended storage
  • Microporous (typically <2 nm)
  • High
  • Typically <50 microns
  • Ionothermal synthesis

CTF-1 MOF Product Specifications

  • Polymetric triazine-based structure
  • >99%
  • Yes
  • (C8N3H4)x
  • Store at room temperature, dry conditions
  • Insoluble in water and common organic solvents
  • Odorless
  • 0.35 Gram per cubic centimeter(g/cm3)
  • Neutral
  • Variable (polymer)
  • CTF-1
  • Not applicable (polymeric solid)
  • Gas storage, catalysis, separation, sensor technology
  • Metal-Organic Framework (MOF)
  • Covalent Triazine Framework (CTF-1)
  • Odorless
  • Research and industrial material for MOF applications
  • Analytical Grade
  • 39109090
  • Not determined
  • Powder
  • Covalent Triazine Framework-1
  • Porous Polymeric Material
  • Solid
  • Product as per analytical laboratory grade
  • Decomposes before melting
  • 1214385-22-0
  • Sealed HDPE bottle
  • Yellow
  • Chemically and thermally robust
  • Stable above 500°C
  • >1400 m2/g
  • 2 years under recommended storage
  • Microporous (typically <2 nm)
  • High
  • Typically <50 microns
  • Ionothermal synthesis

Product Description

CTF-1MOF

Product          

CTF-1  Powder MOF

CAS No.        

2155822-92-5

Appearance

Yellow Powder

Purity 

99%

Size/APS                    

300 to 500nm(Can be customized)

Ingredient

C8H10N4.C8H6O2.2ClH

Product Code

NCZ-MOF-1165-21

Molecular Weight

369.25

Storage

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

Pore Volume

0.4 cm3/g

Pore Size

1.2 nm

Specific Surface

520 m2/g (by BET)

Stability

Acid, alkali, wear-resistant

 

CTF-1 MOF is used asan analytical reagent and Nanochemazone produces many 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 (EuropeanPharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testingstandards. Typical and custom packaging is available. Additional technical,research and safety (MSDS) information is available as is a ReferenceCalculator for converting relevant units of measurement.

Exceptional Porosity and Stability

CTF-1 MOF stands out due to its impressive specific surface area (over 1400 m2/g) and chemical stability under harsh conditions, remaining intact at temperatures beyond 500C. Its microporous (<2 nm) structure makes it particularly effective for applications demanding high surface interactions, such as gas adsorption and separation.


Versatile Applications Across Industries

This material supports a broad spectrum of uses, ranging from gas storage and catalysis to advanced separation techniques and sensor technology. Its compatibility with water and common solvents, coupled with analytical grade purity, makes it a reliable choice for both research laboratories and industrial sectors.


Safe, Durable, and Easy to Handle

Supplied in sealed HDPE bottles, CTF-1 MOF ensures longevity with a two-year shelf life under recommended dry, room-temperature storage. Being non-poisonous, odorless, and chemically stable, it is safe for handling and does not degrade under standard laboratory conditions, ensuring consistent performance over time.

FAQ's of CTF-1 MOF:


Q: How is CTF-1 MOF typically used in research and industry?

A: CTF-1 MOF is employed in applications such as gas storage, catalysis, separation processes, and sensor development, thanks to its high surface area, microporosity, and robust chemical and thermal stability.

Q: What is the recommended process for storing CTF-1 MOF to ensure maximum shelf life?

A: For optimal stability and performance, CTF-1 MOF should be stored in its original sealed HDPE bottle at room temperature and in dry conditions. Proper storage maintains its properties for up to two years.

Q: When should CTF-1 MOF be selected over other MOF materials?

A: Select CTF-1 MOF when your application demands exceptional thermal and chemical stability, high surface area, and resistance to water or organic solvents. It excels in environments that require durability and purity.

Q: Where is CTF-1 MOF produced and supplied?

A: CTF-1 MOF can be sourced from reputable manufacturers, exporters, and suppliers worldwide, including trusted channels in Canada. It is available through various distributors, researchers, and industry suppliers.

Q: What makes the ionothermal synthesis process significant for CTF-1 MOF?

A: Ionothermal synthesis enables the formation of a robust covalent triazine-based polymeric framework, yielding a material with consistent microporosity, high surface area, and superior thermal robustness, ideal for MOF applications.

Q: Is CTF-1 MOF safe and easy to handle in laboratory settings?

A: Yes, CTF-1 MOF is non-poisonous, odorless, and stable under standard laboratory conditions. Its solid powder form and sealed packaging support straightforward, safe handling for researchers.

Q: What benefits does CTF-1 MOF provide compared to other porous materials?

A: CTF-1 MOF offers superior water and thermal stability, high purity, and increased specific surface area, making it a highly reliable material for challenging applications in both research and industry.

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