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Phthalonitrile CAS:91-15-6

Phthalonitrile, with the chemical formula C8H4N2, is an aromatic organic compound characterized by two cyano (-CN) groups attached to a benzene ring. This versatile compound has garnered significant attention due to its unique structural properties and reactivity. Phthalonitrile serves as a crucial building block in organic synthesis, particularly in producing pigments, polymers, and specialty chemicals. Its ability to undergo various chemical transformations makes it valuable in multiple applications across industries, including materials science, coatings, and pharmaceuticals. Additionally, research into phthalonitrile’s derivatives has expanded its potential uses, highlighting its importance in both practical and theoretical chemistry.


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Application and Effect:

is an aromatic compound featuring a distinct molecular structure comprising a benzene ring with two cyano groups located at the 1 and 2 positions. Its molecular formula, C8H4N2, indicates the presence of carbon, hydrogen, and nitrogen, which facilitate a variety of chemical reactions. As a crystalline solid, phthalonitrile is typically colorless or light yellow and exhibits considerable thermal stability, making it suitable for diverse industrial applications. One of the primary uses of phthalonitrile is as a precursor in synthesizing high-performance polymers and resins. The compound can participate in polymerization reactions that yield materials with excellent thermal and mechanical properties. These polymers find applications in coatings, adhesives, and composite materials, where durability and resistance to environmental factors are critical. Additionally, phthalonitrile plays a key role in the production of colorants and pigments. Its ability to form complexes with metal ions enables the development of vibrant and stable dyes used in textiles, plastics, and inks. The versatility of phthalonitrile as a building block allows chemists to modify its structure to create novel compounds tailored for specific applications. In the pharmaceutical industry, phthalonitrile and its derivatives are being investigated for their potential biological activities. Research suggests that some derivatives may exhibit antimicrobial, antifungal, or anticancer properties, prompting further exploration for drug development. Moreover, phthalonitrile's utility extends to advanced material science, where it can be incorporated into formulations aimed at enhancing performance characteristics such as conductivity, thermal stability, and chemical resistance. Overall, phthalonitrile exemplifies the significance of aromatic compounds in modern chemistry. Its diverse applications and the capacity to serve as a fundamental precursor for numerous derivatives underscore its vital role in various fields, ranging from industrial manufacturing to medicinal research.

Product Sample:

L-Arginine1
L-Arginine2

Product Packing:

L-Arginin3

Additional Information:

Composition C8H4N2
Assay 99%
Appearance white powder
CAS No.  91-15-6
Packing Small and bulk
Shelf Life 2 years
Storage Store in cool and dry area
Certification ISO.

 


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