Product Description
Chemical Name:N,4-Dimethyl-n-(oxiran-2-ylmethyl)benzenesulfonamide
CAS No : 890662-14-3
Purity : 95%
MolecularFormula : C11H15NO3S
Molecular Weight:241.3
Appearance : SolidPharmaceutical ApplicationsThis compound is invaluable in the field of pharmaceutical research. It acts as a crucial intermediate for synthesizing drug candidates and various bioactive molecules, contributing significantly to drug discovery and development efforts.
Physical and Chemical StabilityN,4-Dimethyl-n-(oxiran-2-ylmethyl) benzenesulfonamide is stable at room temperature and under standard storage conditions. To maintain its integrity, store it in a tightly closed container, away from strong acids and bases, and in a cool, dry place.
Safe Handling and PackagingPackaged in HDPE bottles or aluminum foil bags, this chemical is classified as non-hazardous and non-poisonous under normal handling. Its transport is not regulated as dangerous, assuring convenient and reliable shipping for research and industrial purposes.
FAQs of N,4-Dimethyl-n-(oxiran-2-ylmethyl) benzenesulfonamide.:
Q: How should N,4-Dimethyl-n-(oxiran-2-ylmethyl) benzenesulfonamide be stored for maximum stability?
A: To ensure maximum stability and prolong shelf life, store the compound in a cool, dry location within a tightly closed container. Avoid exposure to strong acids, strong bases, or direct sunlight. Under optimal storage conditions, it maintains its quality for up to 24 months from the manufacturing date.
Q: What is the primary use of this compound in industry or research?
A: Its primary application is as a key intermediate in pharmaceutical synthesis. It is widely used in drug discovery processes and the preparation of various bioactive molecules in laboratories or industry.
Q: When is special handling necessary for this chemical?
A: Special handling is generally unnecessary, as it is non-hazardous and non-poisonous under standard conditions. However, gloves and protective eyewear are recommended during laboratory use to prevent accidental contact and to maintain a clean work environment.
Q: Where is this compound typically applied in the chemical industry?
A: It is commonly applied in pharmaceutical labs, chemical research facilities, and industry settings focused on synthesizing advanced organic compounds and drug precursors.
Q: What are the recommended processes for its disposal?
A: Although non-hazardous, disposal should follow local regulations for organic chemical substances. Consult your institutions safety guidelines or local waste management authorities for approved disposal methods.
Q: How does the physical form and solubility affect its laboratory usage?
A: The compounds solid, crystalline nature and solubility in organic solvents make it easy to handle and incorporate into organic synthesis protocols. Its limited solubility in water and stability ensure versatility in a variety of chemical reactions.
Q: What benefits does its use offer over alternative intermediates?
A: Thanks to its consistent purity (>98%), stability, and versatility in organic synthesis, this compound provides reliable performance. Its neutral aqueous pH and non-toxic profile also promote safer and more predictable handling during research and industrial procedures.