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Catalog Number:
44038
CAS Number:
22726-30-3
7-méthoxy-1,4-benzothiazine-3-one
Purity:
≥ 98% (CG)
Documents
$407.11 /5G
Taille
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Product Information

7-Methoxy-1,4-benzothiazin-3-one is a versatile compound recognized for its unique structural properties and potential applications in various fields. This compound, also known as 7-methoxybenzothiazine-3-one, exhibits significant relevance in medicinal chemistry, particularly in the development of novel therapeutic agents. Its distinctive benzothiazine core allows for the exploration of diverse biological activities, making it a valuable candidate for research in drug discovery and development.

Researchers have noted its potential in the synthesis of bioactive molecules, particularly in the design of anti-inflammatory and antimicrobial agents. The compound's ability to interact with biological targets can lead to innovative solutions in treating various diseases. Additionally, its favorable solubility and stability profiles enhance its applicability in pharmaceutical formulations. With ongoing studies, 7-Methoxy-1,4-benzothiazin-3-one holds promise for advancing therapeutic strategies and improving health outcomes.

CAS Number
22726-30-3
Purity
≥ 98% (CG)
Molecular Formula
C9H9NO2S
Molecular Weight
195.24
MDL Number
MFCD02660686
PubChem ID
403666
Melting Point
183 - 187 °C
Appearance
Poudre blanche à orange à verte à cristal
Conditions
Magasin chez RT
General Information
CAS Number
22726-30-3
Purity
≥ 98% (CG)
Molecular Formula
C9H9NO2S
Molecular Weight
195.24
MDL Number
MFCD02660686
PubChem ID
403666
Melting Point
183 - 187 °C
Appearance
Poudre blanche à orange à verte à cristal
Conditions
Magasin chez RT
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

7-Methoxy-1,4-benzothiazin-3-one is widely utilized in research focused on:

  • Pharmaceutical Development: This compound is explored for its potential in developing new medications, particularly in treating bacterial infections due to its unique structural properties that enhance antibacterial activity.
  • Antimicrobial Research: It serves as a key component in studies aimed at discovering novel antimicrobial agents, providing researchers with a basis for developing treatments against resistant strains of bacteria.
  • Biochemical Studies: The compound is used in biochemical assays to understand its interactions with biological systems, helping scientists identify its mechanism of action and potential therapeutic effects.
  • Material Science: Researchers investigate its properties for applications in creating advanced materials, particularly those that require specific chemical stability or reactivity.
  • Environmental Chemistry: It is also studied for its environmental impact and degradation pathways, contributing to the field of green chemistry by assessing safer alternatives in chemical processes.

Citations