1-(6-Methylpyridin-3-yl)-2-(4-(methylthio)phenyl)ethanone

97%

  • Product Code: 114485
  CAS:    221615-72-1
Molecular Weight: 257.35 g./mol Molecular Formula: C₁₅H₁₅NOS
EC Number: MDL Number: MFCD20267192
Melting Point: Boiling Point: 426.7±40.0°C at 760 mmHg
Density: Storage Condition: room temperature, stored under inert gas
Product Description: This compound is primarily utilized in the field of organic synthesis, particularly as an intermediate in the production of more complex chemical entities. Its structure, featuring both a pyridine ring and a methylthio phenyl group, makes it a valuable precursor in the development of pharmaceuticals, where such moieties are often key to biological activity. Additionally, it is employed in the research and development of agrochemicals, contributing to the synthesis of compounds with potential pesticidal or herbicidal properties. Its unique chemical framework also lends itself to applications in material science, where it can be used to create novel organic materials with specific electronic or photonic properties.
Product Specification:
Test Specification
Appearance White To Cream To Light Yellow To Yellow Powder Or Crystals
Purity (%) 96.5-100
Infrared Spectrum Conforms To Structure
NMR Conforms To Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.250 10-20 days ฿1,900.00
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1.000 10-20 days ฿4,840.00
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-
5.000 10-20 days ฿12,100.00
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1-(6-Methylpyridin-3-yl)-2-(4-(methylthio)phenyl)ethanone
This compound is primarily utilized in the field of organic synthesis, particularly as an intermediate in the production of more complex chemical entities. Its structure, featuring both a pyridine ring and a methylthio phenyl group, makes it a valuable precursor in the development of pharmaceuticals, where such moieties are often key to biological activity. Additionally, it is employed in the research and development of agrochemicals, contributing to the synthesis of compounds with potential pesticidal or herbicidal properties. Its unique chemical framework also lends itself to applications in material science, where it can be used to create novel organic materials with specific electronic or photonic properties.
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