2-[2-(2,2,2-Trifluoroethoxy)phenoxy]ethyl Methanesulfonate: A Key Pharmaceutical Intermediate
Unlock the potential of Silodosin synthesis with our high-purity 2-[2-(2,2,2-Trifluoroethoxy)phenoxy]ethyl Methanesulfonate.
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2-[2-(2,2,2-Trifluoroethoxy)phenoxy]ethyl Methanesulfonate
This compound is a critical building block in the synthesis of Silodosin, a medication primarily used to treat the symptoms of benign prostatic hyperplasia (BPH). Its high purity and specific chemical structure are essential for the efficacy and safety of the final drug product.
- As a vital pharmaceutical intermediate for Silodosin synthesis, this compound ensures the quality of the final active pharmaceutical ingredient.
- With a high purity of >99.0%, it meets the stringent requirements of pharmaceutical manufacturing processes.
- The white to light-yellow crystalline powder appearance signifies a well-defined chemical structure ready for further processing.
- Its role as a building block in drug discovery contributes to the development of new therapeutic agents.
Advantages of Choosing Our Product
Exceptional Purity for Pharmaceutical Applications
Achieve superior results in your Silodosin synthesis with our product, boasting purity levels exceeding 99.0%, a key factor for high purity Silodosin intermediate production.
Reliable Silodosin Intermediate Synthesis
Leverage our compound for consistent and efficient Silodosin intermediate synthesis, ensuring a dependable supply chain for your pharmaceutical needs.
Versatile Chemical Synthesis Building Block
As a versatile organic intermediate, this methanesulfonate is ideal for various chemical transformations beyond Silodosin, supporting broader chemical synthesis projects.
Key Applications
Pharmaceutical Synthesis
Primarily utilized as a key intermediate in the synthesis of Silodosin, a selective alpha-1A adrenergic receptor antagonist. This application highlights its importance in the pharmaceutical intermediate manufacturing sector.
Drug Discovery and Development
Serves as a valuable building block for researchers in drug discovery, aiding in the development of new therapeutic agents and contributing to advancements in drug discovery building blocks.
Fine Chemical Manufacturing
Its specific chemical structure and high purity make it suitable for various fine chemical manufacturing processes, aligning with the needs of the specialty chemical manufacturing industry.
Organofluorine Chemistry Research
Offers unique properties due to its trifluoroethoxy group, making it a subject of interest in research related to organofluorine chemistry applications.