5,6,7,8-Tetrahydro-2-naphthol: A Key Building Block for Chemical Synthesis
In the intricate field of chemical synthesis, specific molecular structures serve as foundational building blocks for a vast array of complex compounds. One such versatile molecule is 5,6,7,8-Tetrahydro-2-naphthol, identifiable by its CAS number 1125-78-6. This compound, with its unique tetralin structure and hydroxyl functional group, plays a significant role in various synthetic pathways, particularly within the pharmaceutical and fine chemical industries.
Chemical Identity and Properties
5,6,7,8-Tetrahydro-2-naphthol is an organic compound with the molecular formula C10H12O. It is characterized by a partially hydrogenated naphthalene ring system with a hydroxyl group attached at the 2-position. Typically, it appears as a white crystalline solid, possessing a melting point in the range of 59-61°C. Its high purity, often specified as ≥98.0% by manufacturers, makes it a reliable reagent for demanding synthetic applications. Its synonyms include 6-Hydroxytetralin and Tetralin-6-ol, which are often used interchangeably.
Primary Applications in Synthesis
The most prominent application of 5,6,7,8-Tetrahydro-2-naphthol is its function as a critical intermediate in the pharmaceutical industry. It serves as a key precursor in the synthesis of Liranaftate (CAS: 88678-31-3), an active pharmaceutical ingredient used in antifungal treatments. The successful synthesis of Liranaftate hinges on the consistent quality and purity of this starting material. Researchers and chemical engineers rely on this well-defined compound to initiate complex reaction sequences.
Beyond its role in Liranaftate production, 5,6,7,8-Tetrahydro-2-naphthol is a valuable building block for chemists exploring new molecular architectures. Its hydroxyl group can undergo various reactions, such as esterification, etherification, or oxidation, allowing for the introduction of diverse functional groups. This makes it a versatile component in the design and synthesis of novel organic compounds with potential applications in materials science, agrochemicals, and other specialty chemical sectors.
Sourcing a Reliable Building Block
For any chemical synthesis project, sourcing high-quality starting materials is paramount. When seeking to buy 5,6,7,8-Tetrahydro-2-naphthol, it is essential to engage with reputable manufacturers and suppliers. Companies located in China are often key global suppliers for such intermediates, offering competitive pricing and large-scale production capabilities. Key considerations when selecting a supplier include:
- Quality Assurance: Verifying that the supplier provides a high assay (≥98.0%) and consistent product quality through Certificates of Analysis.
- Supply Chain Reliability: Ensuring that the manufacturer can provide a stable and continuous supply, especially for production runs.
- Competitive Pricing: Obtaining favorable pricing, particularly for bulk purchases, is crucial for cost-effective synthesis.
- Technical Support: A knowledgeable supplier can offer valuable insights into product handling and applications.
Conclusion
5,6,7,8-Tetrahydro-2-naphthol (CAS 1125-78-6) stands out as a significant and versatile building block in chemical synthesis. Its reliable application in pharmaceutical manufacturing, especially for Liranaftate, underscores its importance. By partnering with trusted manufacturers and suppliers, researchers and industrial chemists can ensure access to this critical compound, facilitating the development and production of advanced chemical products.
Perspectives & Insights
Core Pioneer 24
“Beyond its role in Liranaftate production, 5,6,7,8-Tetrahydro-2-naphthol is a valuable building block for chemists exploring new molecular architectures.”
Silicon Explorer X
“Its hydroxyl group can undergo various reactions, such as esterification, etherification, or oxidation, allowing for the introduction of diverse functional groups.”
Quantum Catalyst AI
“This makes it a versatile component in the design and synthesis of novel organic compounds with potential applications in materials science, agrochemicals, and other specialty chemical sectors.”