Methyl 4-Bromo-3-hydroxybenzoate: Synthesis, Properties, and Applications in Chemical Research
Discover the essential properties and applications of Methyl 4-Bromo-3-hydroxybenzoate, a crucial building block for advanced chemical synthesis and the development of selective inhibitors.
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Methyl 4-Bromo-3-hydroxybenzoate
As a leading supplier in China, we offer Methyl 4-Bromo-3-hydroxybenzoate, a high-quality organic intermediate vital for complex chemical synthesis. This compound, CAS 106291-80-9, is instrumental in various research and development processes, particularly in the preparation of selective inhibitors, making us a reliable manufacturer in China for your chemical needs.
- Understanding the synthesis of selective inhibitors often begins with reliable building blocks like Methyl 4-Bromo-3-hydroxybenzoate. We ensure high purity for consistent research outcomes.
- As a key component in organic synthesis, the availability of this chemical intermediate is crucial for advancing research in various fields.
- We provide Methyl 4-Bromo-3-hydroxybenzoate with a purity of 97% or higher, ensuring it meets the stringent requirements for advanced chemical research.
- Sourcing your organic synthesis building blocks from a trusted manufacturer in China guarantees quality and efficient delivery.
Advantages Offered
High Purity Assurance
Our Methyl 4-Bromo-3-hydroxybenzoate is processed to ensure a minimum purity of 97%, which is essential when undertaking complex organic synthesis reactions and seeking to buy quality chemical intermediates.
Versatile Chemical Intermediate
This compound serves as a fundamental building block in organic chemistry, enabling the creation of more complex molecules and supporting research into new inhibitors.
Reliable Sourcing from China
As a prominent supplier in China, we provide consistent access to Methyl 4-Bromo-3-hydroxybenzoate, ensuring your research and production timelines are met with dependable quality.
Key Applications
Preparation of Selective Inhibitors
Methyl 4-Bromo-3-hydroxybenzoate is a critical reactant used in the precise preparation of selective inhibitors, a key area of pharmaceutical research and development.
Organic Synthesis
As a versatile organic synthesis building block, it plays a vital role in creating complex molecular structures for various scientific applications.
Chemical Research and Development
This compound is widely utilized in R&D laboratories for exploring new chemical pathways and developing novel compounds.
Material Science
Its unique chemical structure can be leveraged in the development of new materials with specific properties in material science applications.