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  • 3-Nitrophthalhydrazide CAS:3682-15-3

    3-Nitrophthalhydrazide CAS:3682-15-3

    3-Nitrophthalhydrazide is a chemical compound derived from phthalic anhydride, featuring a nitro group at the 3-position of the hydrazide moiety. This compound is utilized primarily in organic synthesis and has applications in various fields, including pharmaceuticals and dyes. The presence of the nitro group enhances its reactivity, making it valuable for creating more complex chemical structures. Furthermore, 3-nitrophthalhydrazide has garnered attention for potential biological activities, including antimicrobial and anticancer properties, positioning it as a subject of interest in medicinal chemistry and materials science research.

  • 2,4,6-TRIPHENOXY-1,3,5-TRIAZINE CAS:1919-48-8

    2,4,6-TRIPHENOXY-1,3,5-TRIAZINE CAS:1919-48-8

    2,4,6-Triphenoxy-1,3,5-triazine is an organic compound characterized by a triazine ring substituted with three phenoxy groups. This unique structure endows it with distinct chemical properties and potential applications in various fields, including materials science and organic synthesis. The incorporation of phenoxy substituents enhances its stability and solubility while also contributing to its reactivity. As a result, 2,4,6-triphenoxy-1,3,5-triazine is being explored for its utility in developing advanced polymers, agricultural chemicals, and pharmaceutical intermediates, making it a valuable compound in both industrial and research contexts.

  • 2,7-Dihydroxy-9-fluorenone CAS:42523-29-5

    2,7-Dihydroxy-9-fluorenone CAS:42523-29-5

    2,7-Dihydroxy-9-fluorenone is an organic compound featuring a fluorenone structure with hydroxyl groups at the 2 and 7 positions. This polyphenolic compound exhibits interesting chemical properties, including strong fluorescence and antioxidant activity, making it significant in various applications such as photochemistry, organic synthesis, and material science. The presence of hydroxyl groups enhances its reactivity and solubility in polar solvents, allowing for a range of chemical modifications. Researchers are increasingly investigating its potential uses in pharmaceuticals and as a reagent in organic reactions, highlighting its importance in both academic research and industrial applications.

  • 2-Chlorophenoxyacetic acid CAS:614-61-9

    2-Chlorophenoxyacetic acid CAS:614-61-9

    2-Chlorophenoxyacetic acid (2-CPA) is an aromatic compound that features a chlorinated phenyl ring and an acetic acid moiety. It is widely recognized for its applications in agriculture as a selective herbicide, effectively targeting broadleaf weeds while preserving cereal crops. The compound’s structure allows it to mimic natural plant growth regulators, specifically auxins, which leads to abnormal growth in unwanted plants. Beyond its agricultural significance, 2-Chlorophenoxyacetic acid also serves as a valuable intermediate in organic synthesis, facilitating the development of pharmaceuticals and other chemical products, thereby underscoring its importance in both industrial and research contexts.

  • 1,1-DIMETHYLUREA CAS:598-94-7

    1,1-DIMETHYLUREA CAS:598-94-7

    1,1-Dimethylurea is an organic compound with the molecular formula C3H8N2O. It features two methyl groups attached to a urea functional group, making it an important nitrogen-containing compound in various chemical applications. Known for its solubility in water and versatile reactivity, 1,1-dimethylurea serves as a key intermediate in organic synthesis, particularly in the production of pharmaceuticals, agrochemicals, and polymers. Its unique structure allows it to participate in diverse reactions, contributing to its utility in research and industrial contexts. Researchers continue exploring its potential, underscoring its significance in both scientific and practical applications.

  • 4,7-Bis(2-bromo-5-thienyl)-2,1,3-benzothiadiazole    CAS:288071-87-4

    4,7-Bis(2-bromo-5-thienyl)-2,1,3-benzothiadiazole CAS:288071-87-4

    4,7-Bis(2-bromo-5-thienyl)-2,1,3-benzothiadiazole is an organic compound featuring a benzothiadiazole core substituted with two bromo-thiophene rings. This unique structure enhances its electronic properties and solubility, making it a valuable candidate for applications in organic electronics. The presence of bromine atoms increases reactivity and functionalization potential, enabling the design of advanced materials with improved performance characteristics.

  • HYDRAZINE CARBONATE CAS:112077-84-6

    HYDRAZINE CARBONATE CAS:112077-84-6

    Hydrazine carbonate is a chemical compound with the formula N2H4·CO3, consisting of hydrazine and carbonate ions. It is primarily used as a versatile reagent in various chemical processes due to its ability to release hydrazine upon heating or reacting with acids. This compound is known for its applications in agriculture, pharmaceuticals, and the production of specialty chemicals, where it serves as a key building block in synthesizing other compounds.

  • DBD-CO-HZ CAS:179951-63-4

    DBD-CO-HZ CAS:179951-63-4

    DBD-CO-HZ is a specialized chemical compound primarily used in various industrial applications. It belongs to the category of organosilicon compounds, which are known for their unique properties such as stability, flexibility, and resistance to heat and chemicals. This compound is often utilized in the production of advanced materials, coatings, and adhesives. Its formulation enables enhanced performance characteristics, making it a valuable component in industries such as electronics, automotive, and construction. Due to its properties, DBD-CO-HZ contributes to improved durability and efficiency in the final products.

  • 4-Amino-5-chloro-2,1,3-benzothiadiazole   CAS:30536-19-7

    4-Amino-5-chloro-2,1,3-benzothiadiazole CAS:30536-19-7

    4-Amino-5-chloro-2,1,3-benzothiadiazole (ACBT) is a chemical compound that belongs to the class of benzothiadiazoles, which are known for their diverse applications in various fields. This compound features an amino group and a chlorine atom substituted on the benzothiadiazole ring, contributing to its unique properties. ACBT has garnered interest in scientific research due to its potential biological activities, including antimicrobial and antifungal effects. Its structural characteristics make it a valuable building block for the synthesis of other functional organic compounds.

     

  • antioxidant 1024 CAS:32687-78-8

    antioxidant 1024 CAS:32687-78-8

    Antioxidant 1024 is a synthetic phenolic compound widely used as an effective stabilizer and antioxidant in various industrial applications. It helps in preventing oxidative degradation of materials such as plastics, rubbers, and fuels by neutralizing free radicals. By extending the shelf life and maintaining the quality of products, Antioxidant 1024 plays a crucial role in enhancing performance and durability, making it essential in industries like polymer manufacturing and coatings.

  • 4-Aminobenzo-2,1,3-thiadiazole CAS:767-64-6

    4-Aminobenzo-2,1,3-thiadiazole CAS:767-64-6

    4-Aminobenzo-2,1,3-thiadiazole is an organic compound characterized by a thiadiazole ring fused with an aminobenzoic acid group. This heterocyclic compound features both amino and thiadiazole functional groups, which contribute to its unique chemical properties. It is of interest in various fields, including medicinal chemistry and materials science, due to its potential biological activities and applications as a building block for more complex molecules.

     

  • 5-[(5-Nitro-2-thiazolyl)thio]-1,3,4thiadiazol-2-amine   CAS:40045-50-9

    5-[(5-Nitro-2-thiazolyl)thio]-1,3,4thiadiazol-2-amine CAS:40045-50-9

    5-[(5-Nitro-2-thiazolyl)thio]-1,3,4-thiadiazol-2-amine is a chemical compound characterized by the presence of thiadiazole and thiazole rings, along with a nitro group. This compound has garnered attention in the field of medicinal chemistry due to its potential biological activities, including antimicrobial and antifungal properties. Its unique structural features allow it to interact with various biological targets, making it a candidate for further research in drug development and agricultural applications.