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1,2,4,5-Tetrafluorobenzene CAS:327-54-8

1,2,4,5-Tetrafluorobenzene is an aromatic compound featuring four fluorine atoms positioned at the 1, 2, 4, and 5 locations on a benzene ring. With the molecular formula C6H2F4, this tetrafluorinated derivative exhibits distinctive electronic properties due to the substantial electron-withdrawing effects of the fluorine atoms. These characteristics lead to altered reactivity compared to non-fluorinated benzenes, making it a valuable compound in organic synthesis. 1,2,4,5-Tetrafluorobenzene finds applications in various fields, including materials science, pharmaceuticals, and agrochemicals, where its unique properties can be exploited for creating advanced materials and developing new chemical entities.


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Application and Effect:

1,2,4,5-Tetrafluorobenzene, represented by the molecular formula C6H2F4, is a member of the class of halogenated aromatic compounds. Its structure, with four fluorine substituents, significantly influences its physical and chemical properties, making it an intriguing subject of study in organic chemistry. The presence of multiple fluorine atoms creates a highly electronegative environment that affects the molecule's reactivity. This tetrafluorinated compound exhibits enhanced acidity and distinctive solubility characteristics, which can be advantageous in various chemical reactions. The strong electron-withdrawing nature of fluorine enhances the electrophilic character of the aromatic ring, facilitating nucleophilic substitution reactions and electrophilic aromatic substitutions. In terms of applications, 1,2,4,5-tetrafluorobenzene plays a significant role in materials science, particularly in the development of high-performance polymers and coatings. The introduction of fluorine into polymer backbones can improve thermal stability, chemical resistance, and hydrophobicity, making these materials suitable for use in aggressive environments, such as those found in the aerospace and automotive industries. Moreover, 1,2,4,5-tetrafluorobenzene serves as a valuable intermediate in pharmaceutical synthesis. The incorporation of fluorine atoms into drug molecules often leads to increased metabolic stability and bioactivity, enhancing therapeutic efficacy. Researchers are exploring its potential in synthesizing novel compounds with targeted biological activities, including antiviral and anticancer agents. Additionally, the compound can participate in cross-coupling reactions, enabling the formation of complex molecular structures necessary for drug discovery and development. Overall, 1,2,4,5-tetrafluorobenzene is a versatile compound that demonstrates significant promise across multiple scientific disciplines. Its unique properties and reactivity open avenues for innovative research and industrial applications, underscoring the importance of fluorinated compounds in contemporary chemistry. Continued investigation into its synthetic pathways and potential applications will likely yield further advancements in both academic and practical realms.

Product Sample:

L-Arginine1
L-Arginine2

Product Packing:

L-Arginin3

Additional Information:

Composition C6H2F4
Assay 99%
Appearance white powder
CAS No.  327-54-8
Packing Small and bulk
Shelf Life 2 years
Storage Store in cool and dry area
Certification ISO.

 


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