1-Bromo-2-methylnaphthalene: A Versatile Intermediate for Chemical Innovation
In the dynamic field of chemical manufacturing and research, the availability of versatile intermediates is key to unlocking new possibilities. 1-Bromo-2-methylnaphthalene, identified by its CAS number 2586-62-1, is one such compound, offering significant utility across a range of scientific and industrial applications. This article explores the properties of this important chemical and its role in facilitating innovation, providing valuable information for chemists, R&D professionals, and procurement specialists.
Understanding 1-Bromo-2-methylnaphthalene (CAS 2586-62-1)
1-Bromo-2-methylnaphthalene is an organic compound characterized by a naphthalene backbone substituted with a bromine atom and a methyl group. Its structure makes it a reactive molecule, primarily employed as an intermediate in the synthesis of more complex organic compounds. Typically presented as a clear yellow liquid, it is usually supplied with a minimum purity of 97%, ensuring its effectiveness in demanding chemical processes.
The key features that make it valuable include:
- Reactive Halogen Group: The bromine atom readily participates in various reactions, such as Grignard reagent formation and palladium-catalyzed cross-coupling reactions (e.g., Suzuki, Heck, Sonogashira).
- Naphthalene Core: Provides a rigid aromatic framework that can be incorporated into a wide array of functional molecules.
- Methyl Substituent: The methyl group can influence solubility, steric effects, and electronic properties of the molecule and its derivatives.
Key Application Areas Driving Demand
The versatility of 1-Bromo-2-methylnaphthalene translates into its use in several critical sectors:
- Pharmaceutical Synthesis: It is a vital building block for creating complex pharmaceutical intermediates and active pharmaceutical ingredients (APIs). Its naphthalene structure can be found in various drug candidates.
- Agrochemicals: Utilized in the synthesis of specialized agrochemicals, including pesticides and herbicides, contributing to crop protection and agricultural efficiency.
- Materials Science: Serves as a precursor for synthesizing advanced materials, such as organic semiconductors, OLED components, and functional polymers.
- Research and Development: Essential for academic and industrial research labs, enabling the exploration of novel chemical reactions and the development of new compounds with potential applications. For instance, it's used in analytical chemistry for method development.
Procurement Strategy for 1-Bromo-2-methylnaphthalene
For businesses looking to buy 1-Bromo-2-methylnaphthalene, identifying reliable suppliers is paramount. When sourcing this intermediate, consider factors like guaranteed purity (e.g., 97%+), consistent batch-to-batch quality, competitive pricing, and responsive customer service. Manufacturers in China are often a strong choice due to their extensive production capacities, advanced technology, and cost-effectiveness. Prioritizing suppliers who can provide comprehensive documentation, such as Certificates of Analysis (CoA) and Material Safety Data Sheets (MSDS), ensures transparency and compliance. Engaging with manufacturers who also offer custom synthesis services can further enhance your ability to meet specific project requirements.
By understanding the chemical nature and application landscape of 1-Bromo-2-methylnaphthalene, R&D professionals and procurement managers can make informed decisions, securing this essential intermediate to drive innovation in their respective fields.
Perspectives & Insights
Core Pioneer 24
“The key features that make it valuable include: Reactive Halogen Group: The bromine atom readily participates in various reactions, such as Grignard reagent formation and palladium-catalyzed cross-coupling reactions (e.”
Silicon Explorer X
“Naphthalene Core: Provides a rigid aromatic framework that can be incorporated into a wide array of functional molecules.”
Quantum Catalyst AI
“Methyl Substituent: The methyl group can influence solubility, steric effects, and electronic properties of the molecule and its derivatives.”