Understanding CAS 571-60-8: Properties and Industrial Applications
In the vast landscape of organic chemistry, certain compounds serve as foundational pillars for numerous industrial processes. 1,4-Dihydroxynaphthalene, identified by its CAS number 571-60-8, is one such versatile molecule. This article aims to provide B2B professionals with a comprehensive understanding of its chemical properties, key industrial applications, and the essential considerations when sourcing this important chemical intermediate.
Chemical Profile of 1,4-Dihydroxynaphthalene
1,4-Dihydroxynaphthalene, also known by synonyms such as 1,4-Naphthalenediol or α-Naphthohydroquinone, possesses the molecular formula C10H8O2 and a molecular weight of 160.17 g/mol. Typically presenting as an almost white to grayish powder, it has a melting point around 188-192 °C. Its structure, featuring a naphthalene core with two hydroxyl groups, dictates its chemical behavior and applications. It exhibits properties characteristic of phenols, including potential for oxidation and participation in various organic reactions.
Key properties include:
- Purity: Commonly available with a minimum purity of 97% or higher, suitable for demanding industrial syntheses.
- Solubility: Soluble in polar organic solvents like methanol, and less soluble in water.
- Reactivity: Its hydroxyl groups make it a reactive intermediate in coupling reactions, substitutions, and oxidation processes.
Understanding these properties is crucial for chemists and engineers aiming to integrate 1,4-Dihydroxynaphthalene into their processes efficiently and safely.
Diverse Industrial Applications
The utility of 1,4-Dihydroxynaphthalene spans multiple sectors, highlighting its importance as a chemical intermediate. Its primary applications include:
- Dyestuff Manufacturing: It is a fundamental precursor in the synthesis of azo dyes and other colorants used in textiles, inks, and coatings, providing specific color shades and performance characteristics.
- Pharmaceutical Synthesis: As a key building block, it is employed in the multi-step synthesis of various active pharmaceutical ingredients (APIs) and complex organic molecules used in drug development.
- Organic Synthesis: Its reactive nature makes it a valuable reagent for academic and industrial research in developing new organic compounds and materials.
For businesses looking to purchase 1,4-Dihydroxynaphthalene, sourcing from a reputable manufacturer is paramount. Factors such as consistent purity, competitive pricing, and reliable supply chains are key to successful procurement. Chinese manufacturers are often a preferred source for their production capabilities and cost efficiencies.
Sourcing Strategies and Considerations
When engaging with suppliers for CAS 571-60-8, B2B buyers should:
- Request Quotations: Compare prices from various manufacturers, especially those in China, for bulk orders to secure the best value.
- Verify Quality: Always ask for a Certificate of Analysis (CoA) to confirm purity and other specifications. Consider requesting samples for validation.
- Assess Supplier Reliability: Choose manufacturers with a proven track record, good communication, and the capacity to meet your volume requirements.
Searching for terms like 'buy 1,4-Dihydroxynaphthalene online', 'CAS 571-60-8 supplier', or 'bulk 1,4-Naphthalenediol price' will help identify potential partners. Prioritize suppliers that offer comprehensive product information and support.
In conclusion, 1,4-Dihydroxynaphthalene is a critical chemical intermediate with broad industrial significance. By understanding its properties and adopting smart sourcing strategies, businesses can ensure a consistent supply of this vital compound, driving innovation and efficiency in their respective fields.
Perspectives & Insights
Quantum Pioneer 24
“Its primary applications include: Dyestuff Manufacturing: It is a fundamental precursor in the synthesis of azo dyes and other colorants used in textiles, inks, and coatings, providing specific color shades and performance characteristics.”
Bio Explorer X
“Pharmaceutical Synthesis: As a key building block, it is employed in the multi-step synthesis of various active pharmaceutical ingredients (APIs) and complex organic molecules used in drug development.”
Nano Catalyst AI
“Organic Synthesis: Its reactive nature makes it a valuable reagent for academic and industrial research in developing new organic compounds and materials.”