The Role of 1,7-Dihydroxynaphthalene in Advanced Organic Synthesis
For chemists and researchers pushing the boundaries of organic synthesis, identifying and securing high-quality building blocks is crucial. 1,7-Dihydroxynaphthalene (CAS 575-38-2) stands out as a versatile and valuable intermediate, offering a unique structural motif for the construction of complex organic molecules. As a leading chemical synthesis organic building blocks provider, understanding its properties and potential is key.
Understanding the Chemical Profile of 1,7-Dihydroxynaphthalene
1,7-Dihydroxynaphthalene, with the molecular formula C10H8O2 and a molecular weight of 160.17, is typically supplied as a yellow powder with high purity, often exceeding 98% or 99%. Its structure, featuring two hydroxyl groups attached to a naphthalene core at the 1 and 7 positions, provides multiple sites for chemical reactions. This makes it an attractive starting material for a wide array of synthetic pathways.
The compound’s melting point, usually around 180-184°C, and its moderate solubility in certain organic solvents contribute to its usability in various reaction conditions. Researchers often look for these specific properties when selecting intermediates for multi-step syntheses, especially when aiming for precise molecular architectures.
Key Applications in Organic Synthesis
The utility of 1,7-Dihydroxynaphthalene spans several areas within organic synthesis:
- Pharmaceutical Intermediates: Its structural features are often incorporated into the backbone of new drug candidates. As a pharmaceutical intermediates supplier, we provide this compound to aid in the development of novel therapeutics.
- Dye and Pigment Synthesis: The naphthalene nucleus is a common chromophore in dyes. 1,7-Dihydroxynaphthalene can be used to create specific color properties and enhance dye fastness.
- Material Science: Researchers may utilize its properties in the synthesis of specialized polymers or advanced materials where its conjugated system and functional groups can be exploited.
- Agrochemicals: While less common than its pharmaceutical and dye applications, its structural framework could be relevant in the development of certain agrochemical compounds.
Sourcing 1,7-Dihydroxynaphthalene: What to Expect from a Manufacturer
When you are looking to buy 1,7-dihydroxynaphthalene for your synthesis needs, consider the following:
- Purity and Consistency: Always verify the purity (assay) and look for lot-to-lot consistency. A reliable manufacturer of 1,7-dihydroxynaphthalene will provide certificates of analysis detailing these specifications.
- Availability and Lead Times: For ongoing research or production, ensure your supplier can meet your demand consistently and within your project timelines. Sourcing from a reputable supplier in China can often provide cost advantages and robust supply chains.
- Technical Support: Engage with suppliers who can offer technical data, safety information (MSDS), and potentially application support, especially for novel synthetic routes.
The ability to effectively buy 1,7-dihydroxynaphthalene, especially in bulk quantities, is critical for scaling up successful laboratory syntheses to industrial production. As a dedicated producer of CAS 575-38-2, we focus on providing chemists with the reliable building blocks they need to innovate and succeed in their synthetic endeavors. Contact us today to learn more about our product offerings and how we can support your chemical synthesis projects.
Perspectives & Insights
Silicon Analyst 88
“Material Science: Researchers may utilize its properties in the synthesis of specialized polymers or advanced materials where its conjugated system and functional groups can be exploited.”
Quantum Seeker Pro
“Agrochemicals: While less common than its pharmaceutical and dye applications, its structural framework could be relevant in the development of certain agrochemical compounds.”
Bio Reader 7
“Sourcing 1,7-Dihydroxynaphthalene: What to Expect from a Manufacturer When you are looking to buy 1,7-dihydroxynaphthalene for your synthesis needs, consider the following: Purity and Consistency: Always verify the purity (assay) and look for lot-to-lot consistency.”