Product Description
Other Products
(S)-1-Phenyl-1,2,3,4-Tetrahydroisoquinoline CAS 118864-75-8
4-(4-Aminophenyl)morpholin-3-oneCAS 438056-69-0
1,3-Cyclohexanedione CAS 504-02-9
1,2,3,9-tetrahydro-4H-carbazol-4-oneCAS 15128-52-6
4-Hydroxycarbazole CAS 52602-39-8
4-(2,3-Epoxypropoxy)carbazoleCAS 51997-51-4
Pharma Grade QualityThis compound meets strict pharmacopeial standards, ensuring a single impurity level of no more than 0.5% and an HPLC purity of 98%. Its high-quality profile makes it suitable for pharmaceutical research and production.
Reliable Stability and StorageDesigned for durability, the material remains stable under recommended conditions for up to two years from production. Store it in a cool, dry environment, away from direct sunlight, to ensure optimal shelf life and performance.
Versatile Applications in Drug SynthesisAs an active pharmaceutical ingredient (API) intermediate, this product plays a key role in the synthesis of various medications. Its robust solubility in organic solvents enables precise incorporation within different manufacturing processes.
FAQ's of 5 chloro 2 methoxy n (2 (4sulfamoylphenyl) Ethyl) benzamide CAS 16673-34-00:
Q: How should 5-chloro-2-methoxy-N-(2-(4-sulfamoylphenyl)ethyl)benzamide be stored for optimal stability?
A: It should be stored in a cool, dry place, away from direct sunlight, to maintain stability and maximize its two-year shelf life.
Q: What analytical methods are used to verify the identity and purity of this compound?
A: Identification and purity are confirmed using IR spectroscopy, NMR, and mass spectroscopy, with HPLC analysis specifying a minimum purity of 98%.
Q: When is this API intermediate typically used during drug manufacturing processes?
A: This intermediate is incorporated during preclinical and clinical stages of pharmaceutical development for the synthesis of final drug compounds.
Q: Where is this material manufactured and available for supply?
A: The product is manufactured in India and is available globally through distributors, exporters, manufacturers, suppliers, and traders.
Q: What is the benefit of its high purity and low impurity levels?
A: High purity (98%) and low impurity levels (0.5%) ensure safer downstream pharmaceutical applications, reducing the risk of unwanted by-products.
Q: How is this compound typically used within pharmaceutical production lines?
A: It serves as a pharmaceutical intermediate, facilitating the production of active ingredients for various medicines due to its reliable quality and solubility.
Q: What are the recommended solvents for dissolving this intermediate?
A: The compound dissolves well in organic solvents such as DMSO and methanol, assisting its integration into synthetic and analytical workflows.