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  • Cresol	 CAS:84989-04-8

    Cresol CAS:84989-04-8

    Cresol, also known as methylphenol, is an aromatic organic compound with the molecular formula C7H8O. It exists in three isomeric forms: ortho-cresol, meta-cresol, and para-cresol, distinguished by the positions of the hydroxyl group (-OH) relative to the methyl group (-CH3) on the benzene ring. Cresol is primarily derived from coal tar and petroleum and is significant in various industrial applications. It is widely used as a disinfectant, antiseptic, and in the production of resins, plastics, and various pharmaceuticals. Its unique properties, including antimicrobial activity, make it valuable across multiple sectors.

  • 1-Octadecanol CAS:112-92-5

    1-Octadecanol CAS:112-92-5

    1-Octadecanol, also known as stearyl alcohol, is a fatty alcohol with the chemical formula C18H38O. It appears as a white, waxy solid at room temperature and is derived either from natural sources, such as plant oils, or produced synthetically. 1-Octadecanol is widely used in various industries, including cosmetics, pharmaceuticals, and food processing, primarily as an emollient, emulsifier, and thickening agent. Its hydrophobic properties make it effective in enhancing the texture and stability of formulations. Additionally, 1-octadecanol plays a role in the production of surfactants and lubricants, showcasing its versatility across multiple applications.

  • Ethyl oleate CAS:111-62-6

    Ethyl oleate CAS:111-62-6

    Ethyl oleate is a fatty acid ester formed from oleic acid and ethanol, with the chemical formula C18H34O2. This pale yellow liquid has a mild, pleasant odor and is commonly used in various industries, including cosmetics, pharmaceuticals, and food processing. Ethyl oleate serves as an effective emulsifier, solvent, and carrier oil in formulations, enhancing the texture and stability of products. Additionally, it is recognized for its potential role in drug delivery systems, where it can facilitate the absorption of active ingredients. Its versatile applications highlight ethyl oleate’s importance across multiple sectors.

  • Guaiacol CAS:90-05-1

    Guaiacol CAS:90-05-1

    Guaiacol is an organic compound with the chemical formula C7H8O2, characterized by its aromatic structure and a sweet, smoky flavor. It is derived from the distillation of guaiacum resin, found in the wood of the guaiac tree, or can be synthesized from catechol. Guaiacol is widely used in the food industry as a flavoring agent, providing a distinctive smokiness to various products. Additionally, it has applications in pharmaceuticals, where it is used as an expectorant in cough syrups, and in the production of chemicals such as vanillin. Its versatile properties make guaiacol a valuable compound across multiple sectors.

  • Acetone oxime CAS:127-06-0

    Acetone oxime CAS:127-06-0

    Acetone oxime is an organic compound with the chemical formula C3H7NO. It appears as a colorless to pale yellow liquid and is primarily recognized for its role as an industrial intermediate in the production of various chemicals, most notably in the manufacture of acrylonitrile. Acetone oxime is synthesized through the reaction of acetone with hydroxylamine and has applications in diverse fields such as pharmaceuticals, plastics, and agrochemicals. Its ability to undergo further chemical transformations makes it a versatile compound in organic synthesis, contributing to the development of numerous derivatives and functional materials in industrial processes.

  • 1-Hexadecanol CAS:36653-82-4

    1-Hexadecanol CAS:36653-82-4

    1-Hexadecanol, commonly known as cetyl alcohol, is a long-chain fatty alcohol with the chemical formula C16H34O. This white, waxy solid is derived from natural sources such as coconut and palm oils or can be produced synthetically. 1-Hexadecanol is primarily used in the cosmetic and personal care industries as an emollient, emulsifier, and thickening agent. Its hydrophobic properties make it effective for improving the texture and stability of creams and lotions, enhancing their spreadability on the skin. Additionally, 1-hexadecanol finds applications in pharmaceuticals, food processing, and industrial formulations, underscoring its versatility.

  • Methyl 2,2-difluoro-2-(fluorosulfonyl)acetate CAS:680-15-9

    Methyl 2,2-difluoro-2-(fluorosulfonyl)acetate CAS:680-15-9

    Methyl 2,2-difluoro-2-(fluorosulfonyl)acetate is a synthetic compound characterized by its unique functional groups and fluorinated structure. With the molecular formula C4H4F3O4S, it features two fluorine atoms attached to the carbon adjacent to a fluorosulfonyl group and an ester functional group. This compound is primarily of interest in organic synthesis and medicinal chemistry due to its potential applications in developing novel pharmaceuticals and agrochemicals. Its distinctive properties make it a valuable intermediate for creating compounds with enhanced biological activity and improved material characteristics.

  • trans-2,3-Dibromo-2-butene-1,4-diol CAS:3234-02-4

    trans-2,3-Dibromo-2-butene-1,4-diol CAS:3234-02-4

    trans-2,3-Dibromo-2-butene-1,4-diol is an organic compound with the molecular formula C4H6Br2O2. It features a butene backbone with two bromine atoms attached to the second and third carbon atoms and hydroxyl groups (-OH) at the first and fourth positions. This compound exists in the trans configuration, which affects its physical and chemical properties. It has applications in organic synthesis, particularly as an intermediate in the preparation of various chemical compounds. Additionally, its diol functionality allows it to participate in reactions typical of alcohols, making it versatile in both academic research and industrial processes.

  • N,N-Dimethylethylamine CAS:598-56-1

    N,N-Dimethylethylamine CAS:598-56-1

    N,N-Dimethylethylamine is an organic compound categorized as a tertiary amine, characterized by the presence of two methyl groups and one ethyl group attached to a nitrogen atom. With the chemical formula C5H13N, it typically appears as a colorless liquid with a distinct amine odor. This compound is utilized in various applications including chemical synthesis, as a solvent, and as an intermediate in the production of pharmaceuticals and agrochemicals. Its properties allow it to participate in significant reactions within organic chemistry, making it valuable across multiple industrial sectors.

  • N,N-Dimethylaminobutane CAS:598-56-1

    N,N-Dimethylaminobutane CAS:598-56-1

    N,N-Dimethylaminobutane is an organic compound classified as a tertiary amine, characterized by the presence of two methyl groups and a butyl group attached to a nitrogen atom. With the chemical formula C6H15N, it typically appears as a colorless liquid with a distinct amine odor. This compound finds applications in various fields, including organic synthesis, pharmaceuticals, and agrochemicals. Its structure allows it to participate in significant chemical reactions, making it a valuable intermediate for producing diverse chemical products across multiple industrial sectors.

  • Isophthalic acid CAS:121-91-5

    Isophthalic acid CAS:121-91-5

    Isophthalic acid is a dicarboxylic acid with the chemical formula C8H6O4, known for its distinctive aromatic structure. It appears as a white crystalline solid and is an important intermediate in the production of polyesters and resins. Isophthalic acid is primarily utilized in the manufacture of polyethylene terephthalate (PET) and other copolymers, enhancing their thermal stability, mechanical strength, and chemical resistance. Its applications extend to the coatings, fiber, and plastics industries, making it a valuable compound in various manufacturing processes, especially in producing high-performance materials.

  • TRIAMYLAMINE CAS:621-77-2

    TRIAMYLAMINE CAS:621-77-2

    Triamylamine is an organic compound classified as a tertiary amine, characterized by its three amyl groups attached to a nitrogen atom. It is primarily derived from the reaction between ammonia and isopentyl alcohols. This pale yellow liquid has a distinct fishy odor and is insoluble in water but soluble in organic solvents. Triamylamine is used in various industrial applications, including the synthesis of pharmaceuticals, agrochemicals, and surfactants. Additionally, it serves as a biogenic amine, being a product of microbial degradation of amino acids, which can sometimes contribute to off-flavors in seafood products.