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Atomfair 4-Bromo-N-methoxy-N-methylbenzamide C9H10BrNO2
Description 4-Bromo-N-methoxy-N-methylbenzamide (CAS No. 192436-83-2) is a high-purity brominated aromatic amide derivative with the molecular formula C9H10BrNO2. This compound is widely utilized in organic synthesis, pharmaceutical research, and material science due to its versatile reactivity as a key intermediate. Its structural features include a bromine substituent at the para position of the benzene ring and a methoxy-methylamide functional group, making it valuable for cross-coupling reactions, such as Suzuki-Miyaura or Buchwald-Hartwig reactions. Our product is rigorously tested for quality, ensuring ??95% purity (HPLC), and is supplied in stable crystalline form under inert packaging to prevent degradation. Ideal for researchers seeking reliable…
Description
Description
4-Bromo-N-methoxy-N-methylbenzamide (CAS No. 192436-83-2) is a high-purity brominated aromatic amide derivative with the molecular formula C9H10BrNO2. This compound is widely utilized in organic synthesis, pharmaceutical research, and material science due to its versatile reactivity as a key intermediate. Its structural features include a bromine substituent at the para position of the benzene ring and a methoxy-methylamide functional group, making it valuable for cross-coupling reactions, such as Suzuki-Miyaura or Buchwald-Hartwig reactions. Our product is rigorously tested for quality, ensuring ??95% purity (HPLC), and is supplied in stable crystalline form under inert packaging to prevent degradation. Ideal for researchers seeking reliable building blocks for complex molecule construction.
- CAS No: 192436-83-2
- Molecular Formula: C9H10BrNO2
- Molecular Weight: 244.08
- Exact Mass: 242.98949
- Monoisotopic Mass: 242.98949
- IUPAC Name: 4-bromo-N-methoxy-N-methylbenzamide
- SMILES: CN(C(=O)C1=CC=C(C=C1)Br)OC
- Synonyms: 4-Bromo-N-methoxy-N-methylbenzamide, 192436-83-2, DTXSID00451356, DTXCID90402175, 834-485-2
Application
4-Bromo-N-methoxy-N-methylbenzamide serves as a pivotal intermediate in the synthesis of pharmaceuticals, agrochemicals, and advanced materials. It is frequently employed in palladium-catalyzed cross-coupling reactions to introduce brominated aromatic moieties into target molecules. Researchers also utilize it for developing kinase inhibitors or other bioactive compounds due to its amide functionality. Its stability and reactivity make it suitable for high-throughput screening and combinatorial chemistry applications.
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