3-Hydroxy-N-methyl-3-phenyl-propylamine: A Key Intermediate for Fluoxetine and Atomoxetine Synthesis
Explore the essential role of 3-Hydroxy-N-methyl-3-phenyl-propylamine (CAS: 42142-52-9) as a vital building block in the pharmaceutical industry, particularly for the synthesis of critical medications like Fluoxetine and Atomoxetine.
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3-Hydroxy-N-methyl-3-phenyl-propylamine
As a leading pharmaceutical intermediate manufacturer in China, we provide high-purity 3-Hydroxy-N-methyl-3-phenyl-propylamine, essential for the production of vital pharmaceuticals. Our commitment to quality ensures reliable supply for your critical synthesis needs.
- Understanding the crucial 3-Hydroxy-N-methyl-3-phenyl-propylamine synthesis pathways is key to efficient drug manufacturing.
- Leverage the unique chemical properties of this aromatic amino alcohol in your research and development efforts.
- Source your Atomoxetine hydrochloride intermediate from a trusted supplier known for consistent quality.
- Explore the applications of this chemical synthesis building block in advancing pharmaceutical development.
Advantages Offered
Reliable Pharmaceutical Intermediate Supply
We are a dedicated supplier of the CAS 42142-52-9 chemical, ensuring consistent availability for your production lines, supporting efficient Fluoxetine manufacturing.
High Purity Standards
Our commitment to quality guarantees that you receive 3-Hydroxy-N-methyl-3-phenyl-propylamine meeting stringent purity requirements for pharmaceutical applications.
Versatile Chemical Applications
This aromatic amino alcohol acts as an excellent initiator in radical addition reactions, broadening its utility in diverse chemical research areas.
Key Applications
Pharmaceutical Synthesis
Crucial for the production of Fluoxetine hydrochloride, a widely used antidepressant, ensuring reliable synthesis of this essential medication.
Drug Development Intermediates
Serves as a key building block for Atomoxetine hydrochloride, contributing to the development of treatments for various neurological conditions.
Chemical Research
Utilized as an initiator in radical addition reactions with tetrahalomethanes, facilitating novel material and compound development.
API Manufacturing
A vital component in the manufacturing of Active Pharmaceutical Ingredients, supporting the global healthcare sector.