Selectfluor丨CAS 140681-55-6

Selectfluor丨CAS 140681-55-6
Product Introduction:
Catalog No.: SS124027
CAS No.: 140681-55-6
Purity/Grade: 98%min
Product Name: Selectfluor
Molecular Formula: C7H14ClFN2.2(BF4)
Molecular Weight: 354.26
Synonym(s): 1-Chloromethyl-4-fluoro-1,4-diazoniabicyclo[2.2.2]octane bis(tetrafluoroborate)
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Technical Parameters
Description

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Specifications of Selectfluor丨140681-55-6

 

Property

Specification

Appearance

White to off-white crystal powder

Purity

98% min

Loss on drying

0.5% max

Effective Fluorine content

5.25% min

 

Transport Information of Selectfluor丨140681-55-6

 

Parameter

Specification

UN Number

3088

Class

 

Packing Group

 

H.S. Code

 

Stability & Reactivity

Stable

Storage

Tightly closed. Store in a closed, dry, ventilated place

Condition to Avoid

 

Package

 

 

Manufacturing Information of Selectfluor丨140681-55-6

 

 

Parameter

Specification

Capacity

20MT/year

Frequency

 

Main Export Countries

 

Capacity/Batch

 

Experience

In stock

Facilities

 
Introduction of Selectfluor丨140681-55-6

 

Selectfluor丨140681-55-6 is a fluorine-based reagent commonly used in organic synthesis for introducing fluorine atoms into organic molecules. It is a highly selective and powerful electrophilic fluorinating agent, making it a key tool in the development of fluorinated compounds for various chemical and pharmaceutical applications.

 

Applications of Selectfluor丨140681-55-6

 

Fluorination of Organic Compounds:

Selectfluor丨140681-55-6 is primarily used to introduce fluorine atoms into aromatic, heteroaromatic, and alkene compounds. It is commonly employed in fluorination reactions to create fluorinated intermediates or final products for pharmaceutical, agrochemical, and material science applications.

It is particularly effective in selective electrophilic fluorination of substrates that are difficult to fluorinate using conventional methods.

Pharmaceutical Chemistry:

Drug Design: Selectfluor is often used in the synthesis of fluorinated pharmaceuticals. The introduction of a fluorine atom can enhance metabolic stability, bioavailability, and receptor binding affinity. It is used to create fluorine-substituted drug molecules that exhibit better pharmacological properties.

Anticancer, Antiviral, and Antibacterial Agents: Fluorine substitution can be critical in improving the efficacy of therapeutic agents, such as those targeting cancer, viral infections, and bacterial diseases.

Material Science:

Fluorinated Polymers: The ability of Selectfluor丨140681-55-6 to fluorinate aromatic compounds can be valuable in the creation of fluorinated polymers or materials that exhibit unique chemical properties, such as hydrophobicity, thermal stability, and chemical resistance.

OLEDs and Fluorescent Materials: Fluorinated compounds can improve the optical properties of organic light-emitting diodes (OLEDs) and other fluorescent materials used in displays and lighting.

Agricultural Chemistry:

Fluorinated Agrochemicals: Selectfluor is used in the synthesis of fluorinated agrochemicals, such as pesticides, herbicides, and fungicides. Fluorination can enhance the stability and effectiveness of these chemicals in agricultural applications.

Fluorinated Organic Intermediates:

Selectfluor is used to synthesize fluorinated intermediates, which can serve as building blocks for further chemical synthesis or as precursors in fine chemical production. This is particularly useful in the manufacture of high-value chemicals that require specific fluorine incorporation.

 

Benefits of Selectfluor丨140681-55-6

 

Selective Fluorination:

Selectfluor丨140681-55-6 is known for its high selectivity in fluorination reactions. It can introduce a single fluorine atom into a molecule without causing side reactions or excessive fluorination, making it an ideal choice for synthesizing compounds with precise fluorine incorporation.

Reactivity and Efficiency:

As an electrophilic fluorinating agent, Selectfluor allows for rapid fluorination reactions at mild conditions (ambient temperature and moderate solvent systems), which can save time and resources compared to traditional fluorinating methods that may require harsher conditions.

Improved Bioactivity:

Incorporating fluorine into organic molecules often enhances bioactivity, stability, and lipophilicity, leading to more effective pharmaceuticals. The ability to selectively fluorinate compounds makes Selectfluor a valuable tool for developing fluorine-containing drug candidates.

Versatility:

Selectfluor can fluorinate a wide range of organic substrates, including aromatic compounds, olefins, and heteroaromatic compounds, making it a highly versatile tool in organic synthesis and medicinal chemistry.

Compatibility with Various Functional Groups:

Selectfluor is compatible with a variety of functional groups, allowing it to be used in the fluorination of complex molecules and enabling the synthesis of fluorinated intermediates for further chemical transformations.

 

Conclusion

 

Selectfluor丨140681-55-6 is a highly selective and efficient fluorinating reagent widely used in organic synthesis, pharmaceutical chemistry, and materials science. Its ability to introduce fluorine atoms into organic molecules with high selectivity makes it an invaluable tool for researchers working on fluorinated pharmaceuticals, agrochemicals, and functionalized materials. While it offers significant benefits in synthetic applications, its toxicity, corrosiveness, and reactivity with moisture require careful handling and adherence to safety protocols.

 

 

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