2-(3-Amino-4-chloro-benzoyl)benzoic Acid: A Key Pharmaceutical Intermediate
Explore the synthesis, applications, and market potential of this vital chemical compound.
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2-(3-Amino-4-chloro-benzoyl)benzoic acid
This compound is a vital synthetic intermediate, primarily utilized in the pharmaceutical sector. Its unique chemical structure enables its use in preparing protein kinase C phosphorylates synthetic fluorescent reporters and serves as a critical building block for various medicinal agents.
- Discover the detailed processes for chemical synthesis intermediate production to meet stringent quality requirements.
- Understand the essential role of this pharmaceutical intermediate 118-04-7 in drug development pipelines.
- Explore the specific applications within chlorthalidone intermediate manufacturing, a key area for this chemical.
- Learn about the broader uses of benzoic acid derivative uses in advanced chemical synthesis projects.
Key Advantages Offered
Versatile Synthesis Intermediate
Leveraging expertise in chemical synthesis intermediate manufacturing, we ensure a reliable supply for diverse applications.
Critical for Diuretic Production
As a cornerstone of chlorthalidone intermediate synthesis, this compound is essential for producing vital cardiovascular medications.
High Purity and Quality
Our commitment to quality guarantees high purity levels, crucial for its role in the pharmaceutical intermediate 118-04-7 market.
Key Applications
Pharmaceutical Synthesis
This compound is a fundamental component in the pharmaceutical synthesis of various drug molecules, contributing to advancements in healthcare.
Chemical Building Block
Its reactive functional groups make it an invaluable chemical synthesis intermediate for creating complex organic molecules.
Diuretic Manufacturing
Crucial for the production of diuretics, its role in the diuretic synthesis process is highly significant.
Research and Development
Used in R&D to prepare protein kinase C phosphorylates synthetic fluorescent reporter, highlighting its utility in biochemical research.