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Steal This Deal N-boc-n-methyl-3-bromoaniline Save Big: 50% Off [aOHYUIG7]

$27.99 $89.99 -69%

N-BOC-N-Methyl-3-Bromoaniline: A Versatile Chemical Building Block N-BOC-N-Methyl-3-Bromoaniline is a highly effective chemical intermediate, designed for use in organic synthesis. This compound is renowned for its exceptional purity and stability,

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Steal This Deal N-boc-n-methyl-3-bromoaniline Save Big: 50% Off [aOHYUIG7]

N-BOC-N-Methyl-3-Bromoaniline: A Versatile Chemical Building Block

N-BOC-N-Methyl-3-Bromoaniline is a highly effective chemical intermediate, designed for use in organic synthesis. This compound is renowned for its exceptional purity and stability, making it an ideal choice for researchers and chemists in various fields. With its unique structure and chemical properties, it serves as a fundamental building block for the synthesis of complex organic molecules. Its versatility is further enhanced by its compatibility with a wide range of reagents and reaction conditions.
  • High Purity: Ensures reliable and consistent results in chemical reactions.
  • Stable Storage: Maintains its integrity over time, reducing the risk of degradation.
  • Wide Applicability: Suitable for use in various organic synthesis pathways.

Technical Specifications and Key Properties

N-BOC-N-Methyl-3-Bromoaniline boasts a molecular formula of C12H16BrNO2 and a molecular weight of 286.16. Its CAS RN is 57598-34-2, and it is represented by the SMILES notation CC(C)(C)OC(=O)N(C)C1=CC(=CC=C1)Br. This compound is available in stock with the catalog number BDJHH042446 and the MDL number MFCD14635681. It is recommended to store this product in an inert atmosphere at room temperature to maintain its stability and efficacy.
  • Chemical Formula: C12H16BrNO2
  • Molecular Weight: 286.16
  • CAS RN: 57598-34-2

Applications and Benefits in Organic Synthesis

N-BOC-N-Methyl-3-Bromoaniline is a valuable tool in the arsenal of organic chemists, offering numerous advantages in the synthesis of pharmaceuticals, agrochemicals, and fine chemicals. Its ability to participate in various reaction types, such as nucleophilic substitution and aromatic electrophilic substitution, makes it a highly sought-after intermediate. By incorporating this compound into your synthesis, you can expect improved yields, reduced reaction times, and enhanced product purity.
  • Enhanced Reaction Efficiency: Leads to higher yields and shorter reaction times.
  • Improved Product Purity: Ensures the quality of your final product.
  • Cost-Effective: Offers a cost-effective solution for organic synthesis.

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