The Role of 2-Amino-5-bromobenzophenone in Custom Organic Synthesis
Custom organic synthesis is the backbone of innovation across many scientific fields, from pharmaceuticals and agrochemicals to material science and specialty chemicals. It involves the precise design and construction of complex molecules tailored to specific needs. In this intricate landscape, certain chemical intermediates serve as indispensable building blocks, enabling chemists to achieve desired molecular structures efficiently. One such versatile compound is 2-Amino-5-bromobenzophenone (CAS 39859-36-4).
What is 2-Amino-5-bromobenzophenone?
2-Amino-5-bromobenzophenone is a functionalized benzophenone derivative. Its chemical structure features a benzophenone core substituted with an amino group at the 2-position and a bromine atom at the 5-position of one of the phenyl rings. This specific arrangement of functional groups provides chemists with multiple points for chemical manipulation, making it a valuable reagent in custom synthesis projects. It is typically supplied as a light yellow to off-white powder with a purity of 98% or higher, suitable for demanding synthetic applications.
Versatility in Custom Organic Synthesis
The utility of 2-Amino-5-bromobenzophenone in custom synthesis stems from the reactivity of its constituent functional groups:
- The Bromine Atom: This halogen is an excellent leaving group and a prime candidate for various palladium-catalyzed cross-coupling reactions. Techniques like Suzuki-Miyaura coupling, Heck reaction, or Buchwald-Hartwig amination allow for the facile formation of new carbon-carbon or carbon-nitrogen bonds. This is crucial for introducing complex aromatic or aliphatic substituents, building larger molecular frameworks.
- The Amino Group: The primary amine group can undergo a wide range of transformations. It can be acylated, alkylated, or used in condensation reactions. It also plays a key role in the formation of heterocyclic systems, which are abundant in biologically active molecules.
- The Benzophenone Core: The inherent structure of the benzophenone moiety itself can impart desirable properties to the final molecule, such as photostability or specific electronic characteristics, depending on the overall molecular design.
These properties make 2-Amino-5-bromobenzophenone a foundational component in multi-step syntheses, enabling the creation of novel compounds that might be difficult or impossible to achieve through other routes. Researchers and contract synthesis organizations often look to buy this intermediate from reliable manufacturers to ensure the success of their custom projects.
Applications Across Industries
The applications of custom synthesis using 2-Amino-5-bromobenzophenone are diverse:
- Pharmaceuticals: Synthesis of drug candidates, reference standards, and intermediates for new APIs.
- Agrochemicals: Development of novel pesticides, herbicides, and fungicides.
- Material Science: Creation of specialized polymers, dyes, or electronic materials with tailored properties.
- Research & Development: Synthesis of probes, inhibitors, or markers for biological research.
For companies and institutions requiring bespoke chemical synthesis, partnering with a trusted supplier of key intermediates like 2-Amino-5-bromobenzophenone is essential. NINGBO INNO PHARMCHEM CO.,LTD. offers this compound, ensuring high purity and reliable supply, thereby supporting your custom synthesis endeavors. We are a dedicated manufacturer and supplier in China, ready to provide you with the quality materials you need to drive innovation. Contact us to inquire about its availability and price for your next project.
Perspectives & Insights
Bio Analyst 88
“In this intricate landscape, certain chemical intermediates serve as indispensable building blocks, enabling chemists to achieve desired molecular structures efficiently.”
Nano Seeker Pro
“Its chemical structure features a benzophenone core substituted with an amino group at the 2-position and a bromine atom at the 5-position of one of the phenyl rings.”
Data Reader 7
“This specific arrangement of functional groups provides chemists with multiple points for chemical manipulation, making it a valuable reagent in custom synthesis projects.”