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Specifications of 4-Acetoxy-3-acetoxymethyl-a-bromoacetophenone丨CAS 24085-07-2
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Appearance: |
Off-white to light yellow crystalline powder |
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Purity (HPLC): |
96% min |
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Assay: |
95% min |
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Identification (HPLC): |
Retention time of major peak in the chromatogram of the sample solution should correspond to that of standard solution as obtained in the assay |
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Impurity A: |
2% max |
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Impurity B: |
2% max |
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Loss on drying: |
0.5% max |
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Residue on Ignition: |
0.3% max |
Applications of 4-Acetoxy-3-acetoxymethyl-a-bromoacetophenone丨CAS 24085-07-2
1. Pharmaceutical and Medicinal Chemistry
● Intermediate in Drug Synthesis: 4-Acetoxy-3-acetoxymethyl-a-bromoacetophenone丨CAS 24085-07-2 can serve as an important intermediate in the synthesis of pharmaceutical molecules. Its bromoacetophenone structure makes it reactive in nucleophilic substitution reactions, enabling the formation of various derivatives with potential biological activity.
● Antimicrobial and Anticancer Potential: The structure of 4-acetoxy-3-acetoxymethyl-α-bromoacetophenone is similar to certain compounds with known antimicrobial and anticancer properties. Through further modifications, this molecule may serve as a precursor to drug candidates targeting microbial infections or cancer cells.
2. Synthesis of Aryl Ketones
● Key Building Block: 4-Acetoxy-3-acetoxymethyl-α-bromoacetophenone is a versatile synthetic intermediate in the production of aryl ketones, a class of compounds widely used in various industrial and pharmaceutical applications. The bromine atom can participate in reactions such as cross-coupling, nucleophilic substitution, or electrophilic aromatic substitution, leading to a variety of functionalized aryl ketones.
● Pharmaceutical Compounds: Aryl ketones are an important class of compounds in the pharmaceutical industry. This compound can be modified to create derivatives with enhanced biological activity, particularly in the treatment of inflammatory diseases, infectious diseases, and cancer.
3. Agrochemical Synthesis
● This molecule can also be used as an intermediate in the synthesis of agrochemicals. Its potential in the development of pesticides, fungicides, or herbicides can be explored by modifying the acetophenone structure. The bromoacetophenone group may facilitate the creation of bioactive compounds with strong pesticidal properties.
4. Synthetic Organic Chemistry
● Reactivity in Organic Synthesis: The bromoacetophenone group is a useful functional group in organic chemistry, known for its ability to undergo nucleophilic substitution and cross-coupling reactions. 4-Acetoxy-3-acetoxymethyl-α-bromoacetophenone can be used to prepare complex organic molecules, including those for the synthesis of polymers, dyes, and specialty chemicals.
● Electrophilic Aromatic Substitution: The acetoxy and acetoxymethyl groups enhance the electrophilic nature of the aromatic ring, making it more reactive in electrophilic aromatic substitution reactions. This can be used for the selective attachment of various functional groups in the synthesis of diverse organic compounds.
5. Materials Science
● The compound may find applications in materials science through its ability to act as a precursor for the synthesis of functionalized aromatic compounds, which are used in the creation of polymers, resins, and other materials.
Benefits of 4-Acetoxy-3-acetoxymethyl-a-bromoacetophenone丨CAS 24085-07-2
1. Versatility as a Synthetic Intermediate
● The bromoacetophenone structure is highly reactive, allowing for the easy synthesis of a wide range of functionalized aromatic compounds. This makes 4-acetoxy-3-acetoxymethyl-α-bromoacetophenone a valuable intermediate in organic synthesis.
2. Potential for Drug Development
● With its unique structure, this compound holds promise as a precursor for the development of pharmaceutical drugs. It may be modified to create antimicrobial, anticancer, or anti-inflammatory agents, which have high therapeutic potential.
3. Cross-Coupling and Substitution Reactions
● The bromine atom in this compound makes it ideal for cross-coupling and nucleophilic substitution reactions, facilitating the creation of complex molecules with diverse functional groups. This is important in both pharmaceutical and industrial applications.
4. Potential in Agrochemical Development
● The compound's reactivity makes it useful in the development of bioactive agrochemicals, including potential pesticides or fungicides. This could lead to more effective agricultural solutions.
5. Application in Materials Science
● The functional groups in 4-acetoxy-3-acetoxymethyl-α-bromoacetophenone provide opportunities for its use in the synthesis of advanced materials, such as polymers and specialty chemicals, with specific electronic or chemical properties.
Conclusion
4-Acetoxy-3-acetoxymethyl-a-bromoacetophenone丨CAS 24085-07-2 is a versatile organic intermediate with applications in pharmaceutical synthesis, agrochemical production, and materials science. The combination of its bromoacetophenone core with acetoxy and acetoxymethyl groups provides multiple reactive sites for further functionalization, making it an important compound for the creation of biologically active molecules, advanced materials, and specialty chemicals. Its potential in drug development and agrochemical synthesis makes it a valuable building block for future innovations in various industries.

