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  • ethynylmagnesium bromide CAS:4301-14-8

    ethynylmagnesium bromide CAS:4301-14-8

    Ethynylmagnesium bromide (C2H3MgBr) is an organometallic compound classified as a Grignard reagent. It consists of an ethynyl group (acetylene) attached to a magnesium bromide unit. This compound is valued for its strong nucleophilic properties, allowing it to react readily with electrophiles, particularly carbonyl compounds. Ethynylmagnesium bromide plays an important role in organic synthesis, particularly in the formation of carbon-carbon bonds and the generation of various alcohols and other functionalized molecules. Its applications span across pharmaceuticals, materials science, and fine chemical synthesis.

  • Isopropylmagnesium chloride CAS:1068-55-9

    Isopropylmagnesium chloride CAS:1068-55-9

    Isopropylmagnesium chloride (C3H7MgCl) is an organometallic compound belonging to the Grignard reagent family, consisting of an isopropyl group bonded to a magnesium atom that is coordinated with a chlorine atom. This reagent is highly valued for its strong nucleophilic properties, allowing it to react effectively with various electrophiles. Isopropylmagnesium chloride is widely utilized in organic synthesis for forming carbon-carbon bonds and generating alcohols from carbonyl compounds. Its versatility makes it an essential tool in fields such as pharmaceuticals, agrochemicals, and materials science.

  • Dimethyl phthalate CAS:131-11-3

    Dimethyl phthalate CAS:131-11-3

    Dimethyl phthalate (DMP) is an organic compound with the chemical formula C10H10O4, classified as a phthalate ester. It is primarily used as a plasticizer, helping to enhance the flexibility and durability of various polymers, particularly polyvinyl chloride (PVC). DMP is also utilized in the production of coatings, adhesives, and cosmetic products due to its ability to improve physical properties. Additionally, it serves as a solvent in chemical processes. While dimethyl phthalate is valued for its utility in industrial applications, concerns have been raised regarding its environmental impact and potential health effects, leading to increased regulatory scrutiny.

  • Pyruvic acid, sodium salt CAS:113-24-6

    Pyruvic acid, sodium salt CAS:113-24-6

    Pyruvic acid, sodium salt (C3H3NaO3) is the sodium salt form of pyruvic acid, a key intermediate in carbohydrate metabolism and a vital compound in various biochemical processes. As an important alpha-keto acid, it plays a crucial role in energy production, cellular respiration, and the synthesis of amino acids. The sodium salt form enhances its solubility and stability, making it suitable for pharmaceutical and nutritional applications. Pyruvic acid, sodium salt is widely used as a food additive, dietary supplement, and research reagent due to its involvement in metabolic pathways and its potential therapeutic properties.

  • Ethylmagnesium Chloride CAS:2386-64-3

    Ethylmagnesium Chloride CAS:2386-64-3

    Ethylmagnesium chloride (C2H5MgCl) is an organometallic compound belonging to the Grignard reagent family, characterized by an ethyl group bonded to a magnesium atom coordinated with a chlorine atom. This versatile reagent is highly valued in organic synthesis for its strong nucleophilic properties, allowing it to readily react with various electrophiles. Ethylmagnesium chloride is commonly employed in the formation of carbon-carbon bonds and the synthesis of alcohols from carbonyl compounds. Its utility spans diverse fields, including pharmaceuticals, agrochemicals, and materials science, making it an essential tool for chemists.

  • Butylmagnesium chloride CAS:693-04-9

    Butylmagnesium chloride CAS:693-04-9

    Butylmagnesium chloride (C4H9MgCl) is an organometallic compound that belongs to the class of Grignard reagents. It consists of a butyl group bonded to a magnesium atom, which is further coordinated with a chlorine atom. This reagent is particularly valued for its strong nucleophilic properties, allowing it to react readily with various electrophiles. Butylmagnesium chloride is widely used in organic synthesis for forming carbon-carbon bonds and generating alcohols from carbonyl compounds. Its versatility and reactivity make it an essential tool in fields such as pharmaceuticals, agrochemicals, and materials science.

  • Calix[6]arene CAS:96107-95-8

    Calix[6]arene CAS:96107-95-8

    Calix[6]arene is a cyclic compound belonging to the calixarene family, characterized by its cup-shaped structure formed by six phenolic units linked by methylene bridges. This unique architecture allows calix[6]arene to function as a versatile host molecule capable of selectively binding various guest species, including ions, small organic molecules, and even biomolecules. Its tunable cavity size and functionalization possibilities make calix[6]arene valuable in fields such as supramolecular chemistry, materials science, and drug delivery systems. The ability to form inclusion complexes enhances its potential for applications in sensors, catalysts, and separation processes.

  • Cyclohexylmagnesium bromide CAS:931-50-0

    Cyclohexylmagnesium bromide CAS:931-50-0

    Cyclohexylmagnesium bromide (C6H11MgBr) is an organometallic compound belonging to the Grignard reagent family. It consists of a cyclohexyl group attached to a magnesium bromide moiety. This reagent is commonly utilized in organic synthesis due to its nucleophilic properties, allowing it to react with various carbonyl compounds to form alcohols. Cyclohexylmagnesium bromide is also known for its reactivity with electrophiles and its potential applications in pharmaceutical chemistry, materials science, and the production of complex organic molecules.

  • Chlorodiphenylphosphine CAS:1079-66-9

    Chlorodiphenylphosphine CAS:1079-66-9

    Chlorodiphenylphosphine (CDPP) is an organophosphorus compound with the chemical formula C12H10ClP. It consists of a phosphorus atom bonded to two phenyl groups and a chlorine atom, which imparts unique reactivity and properties to the compound. CDPP is primarily utilized as a reagent in organic synthesis, particularly in the preparation of phosphine derivatives and coordination complexes. Its applications extend to medicinal chemistry, materials science, and catalysis. However, due to its potential toxicity and environmental impact, careful handling and appropriate safety measures are essential when working with chlorodiphenylphosphine.

  • Dimethyl adipate CAS:627-93-0

    Dimethyl adipate CAS:627-93-0

    Dimethyl adipate (DMA) is an organic compound with the chemical formula C₁₂H₂₂O₄. It is a dimethyl ester of adipic acid, characterized by two methoxy groups bonded to the adipate backbone. DMA is primarily used as a plasticizer and solvent in various industrial applications, including the production of polyesters, coatings, and adhesives. Its properties enhance flexibility, durability, and temperature resistance in polymer formulations. Additionally, dimethyl adipate serves as a reagent in organic synthesis, facilitating the formation of complex chemical structures. However, due to potential health effects, proper safety precautions should be taken when handling this compound.

  • Cyclopropylmagnesium bromide CAS:23719-80-4

    Cyclopropylmagnesium bromide CAS:23719-80-4

    Cyclopropylmagnesium bromide (C3H5MgBr) is an organometallic compound belonging to the Grignard reagent family. It consists of a cyclopropyl group bonded to a magnesium bromide unit. This reagent is notable for its unique ring structure, which imparts distinctive reactivity patterns in organic synthesis. Cyclopropylmagnesium bromide is primarily employed as a nucleophile, participating in various chemical reactions to form carbon-carbon bonds. Its applications are significant in synthetic chemistry, particularly in the preparation of complex organic molecules and pharmaceutical intermediates.

  • isobutylmagnesium bromide CAS:926-62-5

    isobutylmagnesium bromide CAS:926-62-5

    Isobutylmagnesium bromide (C4H9MgBr) is an organometallic compound categorized as a Grignard reagent, consisting of an isobutyl group attached to a magnesium bromide moiety. This reagent is notable for its nucleophilic properties, allowing it to react effectively with various electrophiles. Isobutylmagnesium bromide is widely used in organic synthesis for forming carbon-carbon bonds and generating alcohols from carbonyl compounds. Its applications span pharmaceuticals, agrochemicals, and materials science, making it a vital tool in synthetic chemistry.