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  • DANSYL HYDRAZINE CAS:33008-06-9

    DANSYL HYDRAZINE CAS:33008-06-9

    Dansyl hydrazine is an organic compound characterized by the presence of a dansyl (5-dimethylaminonaphthalene-1-sulfonyl) group attached to a hydrazine moiety. This compound is notable for its fluorescent properties, which make it a useful tool in biochemical and analytical applications. Dansyl hydrazine is commonly used in the study of biological molecules due to its ability to form stable derivatives with primary amines and other nucleophiles.

  • CARBONYL CYANIDE3-CHLOROPHENYLHYDRAZONE CAS:555-60-2

    CARBONYL CYANIDE3-CHLOROPHENYLHYDRAZONE CAS:555-60-2

    Carbonyl cyanide 3-chlorophenylhydrazone (CCCP) is a chemical compound known for its role as an uncoupling agent in cellular respiration studies. It disrupts the proton gradient across mitochondrial membranes, thereby inhibiting ATP synthesis while promoting electron transport chain activity. This property makes CCCP valuable in research focused on mitochondrial function, bioenergetics, and metabolic regulation.

  • N,N’-Bis(dimethylaminomethylene)hydrazine  CAS:16114-05-9

    N,N’-Bis(dimethylaminomethylene)hydrazine CAS:16114-05-9

    N,N’-Bis(dimethylaminomethylene)hydrazine is a hydrazine derivative characterized by the presence of two dimethylaminomethylene groups attached to a central hydrazine structure. It appears as a colorless to pale yellow liquid and exhibits high reactivity due to its ability to participate in various chemical reactions. This compound is primarily researched for its potential applications in organic synthesis and chemical manufacturing.

  • Cyclohexylhydrazine hydrochloride CAS:24214-73-1

    Cyclohexylhydrazine hydrochloride CAS:24214-73-1

    Cyclohexylhydrazine hydrochloride is a chemical compound with the formula C₆H₁₂ClN₃. It consists of cyclohexylhydrazine, which is a hydrazine derivative, combined with hydrochloric acid to form a stable salt. This compound is primarily used in organic synthesis and has garnered attention for its potential applications in pharmaceuticals and research laboratories due to its unique reactivity and properties.

  • Diacetyl hydrazine  CAS:3148-73-0

    Diacetyl hydrazine CAS:3148-73-0

    Diacetyl hydrazine is an organic compound with the chemical formula C₄H₈N₂O₂, characterized by the presence of two acetyl groups (−C(=O)CH₃) attached to a hydrazine moiety (−NH-NH−). This compound is notable for its role as an intermediate in organic synthesis and has been studied for its potential applications in various chemical reactions. Diacetyl hydrazine is particularly recognized for its ability to form stable derivatives and undergo transformations that are useful in both research and industrial processes.

  • 4-BIPHENYLCARBOXYLIC ACID HYDRAZIDE       CAS:18622-23-6

    4-BIPHENYLCARBOXYLIC ACID HYDRAZIDE CAS:18622-23-6

    4-Biphenylcarboxylic acid hydrazide is a chemical compound characterized by its biphenyl structure and the presence of a hydrazide functional group. It features two aromatic rings connected by a carbon chain, with a carboxylic acid moiety converted into a hydrazide. This compound is often utilized in various fields due to its unique chemical properties, including its potential as a building block for more complex organic molecules.

     

  • FCCP CAS:370-86-5

    FCCP CAS:370-86-5

    FCCP, or Carbonyl cyanide p-trifluoromethoxyphenylhydrazone, is an uncoupling agent used primarily in biochemical research. It functions by disrupting the proton gradient across mitochondrial membranes, which ultimately inhibits ATP synthesis while promoting electron transport chain activity. This unique property allows FCCP to play a significant role in studies involving cellular respiration, mitochondrial function, and metabolic regulation.

  • 4-CHLOROBENZHYDRAZIDE  CAS:536-40-3

    4-CHLOROBENZHYDRAZIDE CAS:536-40-3

    4-Chlorobenzhydrazide is an organic compound with the molecular formula C₇H₈ClN₃O. It features a benzhydrazide structure with a chlorine substituent at the para position of the aromatic ring. This compound is recognized for its utility in organic synthesis and has garnered interest due to its potential biological activities, making it relevant in both chemical research and pharmaceutical application

  • 4-BROMOBENZHYDRAZIDE  CAS:5933-32-4

    4-BROMOBENZHYDRAZIDE CAS:5933-32-4

    4-Bromobenzhydrazide is an organic compound with the chemical formula C₇H₈BrN₃O. It features a benzhydrazide framework where a bromine atom is substituted at the para (4) position of the aromatic ring. This compound is notable for its reactivity and has gained attention in various fields, particularly in organic synthesis and medicinal chemistry.

     

  • 2-BROMOBENZHYDRAZIDE CAS:29418-67-5

    2-BROMOBENZHYDRAZIDE CAS:29418-67-5

    2-Bromobenzhydrazide is an organic compound with the chemical formula C7H8BrN3O. It consists of a benzhydrazide structure, where a bromine atom is substituted at the 2-position of the aromatic ring. This compound is recognized for its reactivity and potential applications in various fields, particularly in organic synthesis and medicinal chemistry.

     

  • 2-BROMO-6-HYDRAZINYLPYRIDINE CAS:26944-71-8

    2-BROMO-6-HYDRAZINYLPYRIDINE CAS:26944-71-8

    2-Bromo-6-hydrazinylpyridine is an organic compound with the chemical formula C₇H₈BrN₃. This compound features a pyridine ring substituted with a bromine atom at the 2-position and a hydrazine group at the 6-position. Known for its reactivity, 2-bromo-6-hydrazinylpyridine serves as a valuable building block in organic synthesis, particularly in medicinal chemistry and agrochemical research.

     

  • Carbidopa Monohydrate CAS:38821-49-7

    Carbidopa Monohydrate CAS:38821-49-7

    Carbidopa Monohydrate is a pharmaceutical compound used primarily as a medication for the treatment of Parkinson’s disease. It acts as an inhibitor of aromatic L-amino acid decarboxylase (AADC), which prevents the conversion of levodopa to dopamine outside the brain. By inhibiting this enzyme, carbidopa ensures more levodopa reaches the brain, where it can be converted to dopamine, thereby improving motor function and reducing the symptoms of Parkinson’s disease.