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Home  > Benzothiazole, 2-​(4-​morpholinylthio)​-

AB65901

102-77-2 | Benzothiazole, 2-​(4-​morpholinylthio)​-

Packsize Purity Availability Price Discounted Price    Quantity
25g 97% in stock $16.00 $11.00 -   +
100g 97% in stock $36.00 $25.00 -   +
500g 97% in stock $148.00 $104.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AB65901
Chemical Name: Benzothiazole, 2-​(4-​morpholinylthio)​-
CAS Number: 102-77-2
Molecular Formula: C11H12N2OS2
Molecular Weight: 252.35578
MDL Number: MFCD00022870
SMILES: O1CCN(CC1)Sc1nc2c(s1)cccc2

 

Upstream Synthesis Route
  • Benzothiazole, 2-(4-morpholinylthio)- is a versatile compound widely used in chemical synthesis. With its unique structure and reactivity, this compound is key in the creation of various organic molecules and materials.One important application of Benzothiazole, 2-(4-morpholinylthio)- is in the field of pharmaceuticals. Due to its ability to undergo various chemical reactions, it is utilized in the synthesis of drug molecules with therapeutic properties. The compound's sulfur-containing group, morpholine ring, and benzothiazole backbone all contribute to its functionality in drug design and development.In addition to its role in pharmaceutical synthesis, Benzothiazole, 2-(4-morpholinylthio)- is also employed in the production of agrochemicals and specialty chemicals. Its presence in these sectors allows for the creation of compounds that exhibit specific biological activities or serve as key intermediates in the manufacturing of various products.Furthermore, the unique properties of Benzothiazole, 2-(4-morpholinylthio)- make it a valuable tool in material science. Its structural features enable it to participate in polymerization reactions, leading to the formation of polymers with desired characteristics such as elastomeric properties, thermal stability, or electronic conductivity.Overall, Benzothiazole, 2-(4-morpholinylthio)- serves as a versatile building block in chemical synthesis processes, playing a crucial role in the development of new pharmaceuticals, agrochemicals, specialty chemicals, and advanced materials.
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