Description
trans-4-Propylcyclohexanemethanol (CAS No. 71458-06-5) is a high-purity cyclohexane derivative with the molecular formula C10H20O and IUPAC name (4-propylcyclohexyl)methanol. This compound is characterized by its trans-configuration, ensuring superior stereochemical consistency for advanced research applications. It is supplied as a clear, colorless liquid with a mild odor, optimized for use in organic synthesis, fragrance development, and material science. Each batch undergoes rigorous QC testing, including GC-MS and NMR analysis, to guarantee ≥98% purity. Ideal for pharmaceutical intermediates, chiral building blocks, and specialty chemical formulations. Store in a tightly sealed container under inert conditions to maintain stability.
Properties
- CAS Number: 71458-06-5
- Complexity: 93
- IUPAC Name: (4-propylcyclohexyl)methanol
- InChI: InChI=1S/C10H20O/c1-2-3-9-4-6-10(8-11)7-5-9/h9-11H,2-8H2,1H3
- InChI Key: AGBINQHSDMZNBI-UHFFFAOYSA-N
- Exact Mass: 156.151415257
- Molecular Formula: C10H20O
- Molecular Weight: 156.26
- SMILES: CCCC1CCC(CC1)CO
- Topological: 20.2
- Monoisotopic Mass: 156.151415257
- Synonyms: 71458-06-5, TRANS-4-PROPYLCYCLOHEXANEMETHANOL, (trans-4-Propylcyclohexyl)methanol, (4-propylcyclohexyl)methanol, 63767-88-4, 4-propylCyclohexanemethanol, SCHEMBL1828271, SCHEMBL2281105, SCHEMBL5678816, SCHEMBL5678819, SCHEMBL6665382, trans-4-propylcyclohexylmethanol, SCHEMBL10826452, trans-4-propyl cyclohexylmethanol, DTXSID90980342, AGBINQHSDMZNBI-MGCOHNPYSA-N, AGBINQHSDMZNBI-UHFFFAOYSA-N, trans-4-n-propylcyclohexylmethanol, EINECS 264-452-2, 4-Ethyl-alpha-methylcyclohexylmethanol, AKOS015262758, AKOS015917576, 376642-44-3, DB-129059, H28057, A1-03303
Application
trans-4-Propylcyclohexanemethanol serves as a versatile intermediate in organic synthesis, particularly for constructing chiral molecules in pharmaceuticals. Its rigid cyclohexane backbone makes it valuable in fragrance formulations, imparting long-lasting woody-amber notes. Researchers also utilize it in liquid crystal and polymer additive studies due to its steric and electronic properties.
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