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  • 4,4′-Bipyridine CAS:553-26-4

    4,4′-Bipyridine CAS:553-26-4

    4,4′-Bipyridine, with the chemical formula C10H8N2, is an organic compound consisting of two pyridine rings connected by a single bond. This colorless to yellow crystalline solid is used in various applications, including as a ligand in coordination chemistry and as an intermediate in the synthesis of pharmaceuticals, agrochemicals, and dyes. The unique structural properties of 4,4′-bipyridine allow it to form stable complexes with transition metals, making it valuable in catalysis and materials science. Its versatility and functional characteristics contribute significantly to its role in both academic research and industrial applications.

  • 5-Chlorovaleric acid CAS:1119-46-6

    5-Chlorovaleric acid CAS:1119-46-6

    5-Chlorovaleric acid is an organic compound with the chemical formula C5H9ClO2, characterized by a five-carbon chain with a carboxylic acid group and a chlorine atom at the fifth carbon. This compound appears as a colorless to pale yellow liquid and is primarily utilized as a chemical intermediate in organic synthesis. Its unique structure enables it to participate in various chemical reactions, making it valuable in the production of pharmaceuticals, agrochemicals, and specialty chemicals. The presence of both a carboxyl group and a halogen enhances its reactivity, facilitating diverse transformations in synthetic chemistry.

  • 1-Chloroethyl chloroformate CAS:50893-53-3

    1-Chloroethyl chloroformate CAS:50893-53-3

    1-Chloroethyl chloroformate, with the chemical formula C₅H₈Cl₂O₂, is an organic compound classified as a chloroformate ester. This colorless liquid features a strong, pungent odor and serves primarily as a reagent in organic synthesis. Its unique structure, containing both a chloroethyl group and a chloroformate moiety, allows it to act as an acylating agent. 1-Chloroethyl chloroformate is particularly significant in pharmaceutical chemistry for modifying bioactive compounds and facilitating the synthesis of esters and carbamate derivatives. Additionally, its applications extend to agrochemicals and materials science, contributing to the production of specialized functionalized products.

  • 2,2′-Bipyridine CAS:366-18-7

    2,2′-Bipyridine CAS:366-18-7

    2,2′-Bipyridine is a bidentate ligand consisting of two pyridine rings connected by a carbon-carbon bond at the 2-position. This compound plays a crucial role in coordination chemistry and catalysis due to its ability to chelate metal ions effectively. Its unique structural features enable it to form stable complexes with various transition metals, making it indispensable in fields such as organic synthesis, materials science, and electrochemistry. 2,2′-Bipyridine has also found applications in developing sensors and photocatalysts, reflecting its versatility and relevance in advancing chemical research and technology.

  • 2,2,2-Trichloroethyl chloroformate CAS:17341-93-4

    2,2,2-Trichloroethyl chloroformate CAS:17341-93-4

    2,2,2-Trichloroethyl chloroformate is an organochlorine compound with the chemical formula C₅H₂Cl₅O₂. As a colorless liquid possessing a strong, pungent odor, it serves as a significant reagent in organic synthesis. This compound features a trichloroethyl group linked to a chloroformate moiety, which endows it with unique reactivity as an acylating agent. Its utility spans various fields, particularly in medicinal chemistry for modifying bioactive compounds and facilitating the synthesis of carbamates and esters. Additionally, 2,2,2-trichloroethyl chloroformate finds applications in agrochemicals and materials science, contributing to the development of specialized functionalized products.

  • 5-Bromopyrimidine CAS:4595-59-9

    5-Bromopyrimidine CAS:4595-59-9

    5-Bromopyrimidine is an organic compound with the chemical formula C4H3BrN2. It is a halogenated derivative of pyrimidine, characterized by the presence of a bromine atom at the fifth position of the pyrimidine ring. This colorless to pale yellow liquid or solid is of significant interest in medicinal chemistry and materials science due to its reactivity and ability to serve as a building block for synthesizing various biologically active compounds. Its unique structure enables it to partake in diverse chemical reactions, making it valuable in several applications.

     

  • flufenacet-alcohol CAS:54041-17-7

    flufenacet-alcohol CAS:54041-17-7

    Flufenacet-alcohol is a derivative of flufenacet, a selective pre-emergent herbicide that targets specific weed species in cereal crops. This compound features a hydroxyl group, enhancing its solubility and reactivity. Flufenacet itself is known for its ability to inhibit the enzyme responsible for the biosynthesis of certain lipids in plants, thus disrupting cellular functions and preventing weed growth. The alcohol form, flufenacet-alcohol, may have unique properties that enhance its effectiveness in agricultural applications, ensuring better control over weed populations while minimizing harm to desirable crops.

  • 5-Bromovaleryl chloride CAS:4509-90-4

    5-Bromovaleryl chloride CAS:4509-90-4

    5-Bromovaleryl chloride is an organic compound characterized by a valeryl moiety substituted with a bromine atom at the 5-position and a chlorine atom. With the molecular formula C5H8BrClO, this compound serves as a halogenated acyl chloride, making it a key intermediate in organic synthesis. Its unique structure allows for diverse reactivity, enabling its utilization in various chemical reactions, particularly in the fields of pharmaceuticals and agrochemicals.

  • Acrylic anhydride CAS:2051-76-5

    Acrylic anhydride CAS:2051-76-5

    Acrylic anhydride, also known as acrylic acid anhydride, is a chemical compound derived from acrylic acid. It features a reactive anhydride functional group that makes it valuable in various industrial applications. This colorless liquid is known for its ability to undergo polymerization and is used primarily in the production of polymers and resins. Its unique properties enable it to serve as a precursor in the synthesis of various chemicals, making it a crucial component in fields such as adhesives, coatings, and plastics.

  • Tributylphosphine CAS:998-40-3

    Tributylphosphine CAS:998-40-3

    Tributylphosphine is an organophosphorus compound with the chemical formula C12H27P. It appears as a colorless to yellowish liquid and is known for its strong nucleophilic properties and ability to form stable complexes with various metals. Due to its unique structure, which features three butyl groups attached to a phosphorus atom, tributylphosphine serves as an important reagent in organic synthesis and coordination chemistry. It plays a crucial role in catalysis, offering significant utility in various industrial applications and research settings.

  • Chlorodi(p-tolyl)phosphine, 95% CAS:1019-71-2

    Chlorodi(p-tolyl)phosphine, 95% CAS:1019-71-2

    Chlorodi(p-tolyl)phosphine is an organophosphorus compound with the chemical formula C14H16ClP. It features two p-tolyl (para-methylphenyl) groups attached to a phosphorus atom, along with a chlorine substituent. This compound appears as a colorless to light yellow liquid and is known for its application in coordination chemistry and organic synthesis. With its nucleophilic properties, chlorodi(p-tolyl)phosphine is a versatile reagent used to create various phosphorus-containing compounds, making it valuable in both industrial and research settings.

  • Octachloronaphthalene CAS:2234-13-1

    Octachloronaphthalene CAS:2234-13-1

    Octachloronaphthalene (OCN) is a chlorinated naphthalene compound with the chemical formula C10Cl8. It appears as a solid, colorless to pale yellow substance and is known for its high stability and low volatility. As a member of the polychlorinated biphenyls (PCBs) family, OCN has attracted attention due to its persistent environmental presence and bioaccumulation potential. Historically, octachloronaphthalene has been used in various industrial applications, including as a dielectric fluid and in the production of heat-resistant materials.