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  • 2-Chloro-5-methylpyridine CAS:18368-64-4

    2-Chloro-5-methylpyridine CAS:18368-64-4

    2-Chloro-5-methylpyridine is a halogenated aromatic compound characterized by a chlorine atom at the 2-position and a methyl group at the 5-position of the pyridine ring. With the molecular formula C₆H₆ClN, this compound is of significant interest in various fields, including pharmaceuticals, agrochemicals, and organic synthesis. Its unique structure allows for potential interactions with biological systems, making it a candidate for developing bioactive compounds. Ongoing research explores its reactivity and applications, particularly as an intermediate in synthesizing various nitrogen-containing heterocycles and other valuable chemical entities.

  • 2-Chloro-5-hydroxymethylpyridine CAS:21543-49-7

    2-Chloro-5-hydroxymethylpyridine CAS:21543-49-7

    2-Chloro-5-hydroxymethylpyridine is an organic compound featuring a chlorinated pyridine ring with a hydroxymethyl (-CH₂OH) substituent at the 5-position. Its molecular formula is C₆H₆ClN, making it an important derivative of pyridine in various chemical applications. This compound has garnered attention in fields such as medicinal chemistry and agrochemicals due to its potential biological activity and reactivity. Ongoing research explores its role as an intermediate in synthesizing more complex molecules and its utility in developing bioactive compounds for pharmaceutical and agricultural purposes.

  • 1,3,4-Thiadiazole,2-(methylsulfonyl)-5-(trifluoromethyl)- CAS:27603-25-4

    1,3,4-Thiadiazole,2-(methylsulfonyl)-5-(trifluoromethyl)- CAS:27603-25-4

    1,3,4-Thiadiazole, 2-(methylsulfonyl)-5-(trifluoromethyl)- is a heterocyclic compound featuring a thiadiazole ring system substituted with a methylsulfonyl group and a trifluoromethyl group. With the molecular formula C₅H₄F₃N₃O₂S, this compound has garnered attention in various fields, particularly in medicinal chemistry and agricultural chemistry. Its unique structural features contribute to its diverse biological activities, including antifungal and antibacterial properties. Ongoing research aims to explore its potential as a lead compound for developing novel pharmaceuticals and agrochemicals, leveraging its reactivity and ability to interact with biological targets.

  • 2,4-Dichloro-5-methoxyaniline CAS:98446-49-2

    2,4-Dichloro-5-methoxyaniline CAS:98446-49-2

    2,4-Dichloro-5-methoxyaniline is an aromatic amine characterized by the presence of two chlorine atoms and a methoxy group attached to an aniline structure. With the chemical formula C₇H₈Cl₂N₄O, this compound features a dichlorinated aromatic ring, which enhances its reactivity and potential applications in various fields. It is primarily utilized in the synthesis of dyes, agrochemicals, and pharmaceuticals due to its ability to act as a versatile building block. Additionally, its unique electronic properties make it a candidate for further research in materials science and organic synthesis.

  • 2,6-Dichloro-3-cyano-5-fluoropyridine CAS:82671-02-1

    2,6-Dichloro-3-cyano-5-fluoropyridine CAS:82671-02-1

    2,6-Dichloro-3-cyano-5-fluoropyridine is a fluorinated heterocyclic compound with the molecular formula C7HCl2FN2. This pyridine derivative features two chlorine atoms at the 2 and 6 positions, a cyano group at the 3 position, and a fluorine atom at the 5 position. The unique combination of functional groups confers distinct chemical properties, making it valuable in various fields such as agrochemicals and pharmaceuticals. Its reactivity and ability to participate in diverse chemical reactions make it an essential intermediate for researchers aiming to develop new compounds with potential biological activity.

  • 4-Methylthiosemicarbazide CAS:6610-29-3

    4-Methylthiosemicarbazide CAS:6610-29-3

    4-Methylthiosemicarbazide is an organic compound with the molecular formula C4H10N4S. It features a thiosemicarbazide structure, characterized by a methyl group attached to the nitrogen atom at the 4-position and a thiol (-SH) group. This compound has garnered significant interest in medicinal chemistry due to its potential as an antitumor and antimicrobial agent. Its unique structural properties enable it to interact with various biological targets, making it a valuable starting point for synthesizing more complex bioactive molecules. Ongoing research continues to explore its pharmacological applications and mechanisms of action in various therapeutic areas.

  • 3-isochromanone CAS:4385-35-7

    3-isochromanone CAS:4385-35-7

    3-Isochromanone, also known as 3-benzopyran-1-one, is a heterocyclic organic compound characterized by a fused isochroman and carbonyl functional group. With the molecular formula C9H8O2, it exhibits unique structural features that contribute to its interesting chemical and physical properties. This compound has attracted attention in medicinal chemistry due to its potential pharmacological activities, including anti-inflammatory, antioxidant, and anticancer effects. As an important intermediate in organic synthesis, 3-isocromanonone is utilized in the preparation of various derivatives with applications in pharmaceuticals and agrochemicals.

  • o-Tolylacetic acid CAS:644-36-0

    o-Tolylacetic acid CAS:644-36-0

    o-Tolylacetic acid, also known as 2-tolylacetic acid, is an aromatic carboxylic acid characterized by a methyl group attached to a phenyl ring in the ortho position relative to the acetic acid moiety. With the molecular formula C9H10O2, it exhibits properties significant for various applications in organic synthesis and pharmaceutical chemistry. This compound serves as an important intermediate in the production of fine chemicals and has garnered interest due to its potential biological activities. Research into o-tolylacetic acid continues to uncover its utility in drug development and other industrial processes.

  • Glycinonitrile hydrochloride CAS:6011-14-9

    Glycinonitrile hydrochloride CAS:6011-14-9

    Glycinonitrile hydrochloride, also known as 2-aminoacetonitrile hydrochloride, is an organic compound with the molecular formula C2H6ClN. It consists of a nitrile group attached to a glycine moiety, making it an important building block in the synthesis of various bioactive molecules. This hydrochloride salt enhances the solubility of glycinonitrile in aqueous solutions, facilitating its use in diverse chemical reactions. Glycinonitrile hydrochloride is primarily employed in medicinal chemistry and biochemistry, particularly in the development of pharmaceuticals and agrochemicals, where its unique properties can be harnessed for specific applications.

  • Terephthaldicarboxaldehyde CAS:623-27-8

    Terephthaldicarboxaldehyde CAS:623-27-8

    Terephthaldicarboxaldehyde (TDCA) is an organic compound with the molecular formula C10H8O4. It consists of a benzene ring with two aldehyde (-CHO) groups and two carboxylic acid (-COOH) groups located at the 1,4-positions, making it a derivative of terephthalic acid. This compound plays a significant role in organic synthesis and materials science, particularly in the production of polymers, resins, and specialty chemicals. Its unique functional groups provide reactivity that allows for various chemical transformations, making TDCA a valuable intermediate in developing new materials and bioactive compounds.

  • 4′-Fluoroacetophenone CAS:403-42-9

    4′-Fluoroacetophenone CAS:403-42-9

    4′-Fluoroacetophenone is an organic compound with the molecular formula C9H9F0. It features a phenyl group substituted by a fluoro group at the para position and an acetyl group attached to the benzene ring. This colorless to pale yellow liquid is known for its distinctive aroma and is commonly used in organic synthesis as an intermediate for pharmaceuticals, agrochemicals, and various fine chemicals. The presence of both the fluorine atom and the acetyl functional group imparts unique reactivity to 4′-fluoroacetophenone, making it valuable in chemical research and industrial applications.

  • Ethyl O-methylbenzoate CAS:87-24-1

    Ethyl O-methylbenzoate CAS:87-24-1

    Ethyl O-methylbenzoate is an organic compound with the molecular formula C10H12O2. It features an ethyl ester derived from the reaction of benzoic acid and methanol, resulting in a compound that contains both ester and ether functional groups. This aromatic ester is characterized by its pleasant, fruity odor, making it a valuable ingredient in the fragrance and flavor industry. Additionally, it serves as an intermediate in organic synthesis, contributing to the production of various pharmaceuticals and fine chemicals. Its unique structure imparts significant reactivity, facilitating diverse chemical transformations.