Atomfair Tetrahydro-2-(4-methylphenoxy)-2H-pyran C12H16O2

Description Tetrahydro-2-(4-methylphenoxy)-2H-pyran (CAS No. 13481-09-9) is a high-purity organic compound with the molecular formula C12H16O2and IUPAC name 2-(4-methylphenoxy)oxane . This versatile chemical is characterized by its cyclic ether structure, featuring a tetrahydro-2H-pyran ring substituted with a 4-methylphenoxy group. It is commonly utilized in organic synthesis, pharmaceutical research, and material science due to its unique reactivity and stability. Available in various quantities, this product is rigorously tested to meet the highest standards of purity and consistency, making it ideal for laboratory and industrial applications. Store in a cool, dry place away from light and moisture to ensure long-term stability.

Description

Description

Tetrahydro-2-(4-methylphenoxy)-2H-pyran (CAS No. 13481-09-9) is a high-purity organic compound with the molecular formula C12H16O2 and IUPAC name 2-(4-methylphenoxy)oxane. This versatile chemical is characterized by its cyclic ether structure, featuring a tetrahydro-2H-pyran ring substituted with a 4-methylphenoxy group. It is commonly utilized in organic synthesis, pharmaceutical research, and material science due to its unique reactivity and stability. Available in various quantities, this product is rigorously tested to meet the highest standards of purity and consistency, making it ideal for laboratory and industrial applications. Store in a cool, dry place away from light and moisture to ensure long-term stability.

  • CAS No: 13481-09-9
  • Molecular Formula: C12H16O2
  • Molecular Weight: 192.25
  • Exact Mass: 192.115029749
  • Monoisotopic Mass: 192.115029749
  • IUPAC Name: 2-(4-methylphenoxy)oxane
  • SMILES: CC1=CC=C(C=C1)OC2CCCCO2
  • Synonyms: 13481-09-9, Tetrahydro-2-(4-methylphenoxy)-2H-pyran, Tetrahydro-2-(p-tolyloxy)-2H-pyran, 2H-Pyran, tetrahydro-2-(4-methylphenoxy)-, EINECS 236-784-8

Application

Tetrahydro-2-(4-methylphenoxy)-2H-pyran serves as a valuable intermediate in the synthesis of complex organic molecules, particularly in pharmaceutical and agrochemical research. Its cyclic ether structure makes it useful for constructing heterocyclic compounds and modifying reaction pathways. Researchers also employ it in polymer chemistry and material science for developing specialized coatings and resins. Its stability and reactivity under various conditions make it a preferred choice for exploratory and process chemistry applications.

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