Disodium 3,6-dihydroxynaphthalene-2,7-disulfonate: High-Purity Dye Intermediate Supplier in China

Discover the essential properties and applications of Disodium 3,6-dihydroxynaphthalene-2,7-disulfonate (CAS 7153-21-1). As a leading manufacturer and supplier in China, we provide high-quality intermediates vital for the dyestuff and organic synthesis industries. Explore our competitive pricing and reliable supply chain.

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Advantages of Partnering with Us

Exceptional Purity and Quality

Our Disodium 3,6-dihydroxynaphthalene-2,7-disulfonate boasts 98% purity, making it an ideal choice for demanding applications in the dyestuff industry. We ensure batch-to-batch consistency, a crucial factor for manufacturers aiming for predictable product outcomes.

Strategic Sourcing and Supply

As a dedicated supplier in China, we guarantee a stable and efficient supply of this vital dye intermediate. We understand the importance of timely delivery for your production schedules and offer flexible order quantities to meet your specific requirements.

Competitive Pricing for B2B Buyers

We offer competitive pricing for Disodium 3,6-dihydroxynaphthalene-2,7-disulfonate, allowing you to optimize your procurement costs without compromising on quality. Contact us to get a quote for your bulk purchase needs.

Key Application Areas

Dyestuff Industry

This compound is a fundamental intermediate in the synthesis of various naphthalene-based dyes, particularly azo dyes, contributing to vibrant colors and excellent fastness properties essential for textile and leather dyeing.

Organic Synthesis

It serves as a crucial building block in organic chemistry for creating more complex molecules. Its functional groups allow for further reactions to produce fine chemicals with specialized industrial applications.

Pigment Production

Beyond dyes, it can also be utilized in the development and production of specific pigments, contributing to color solutions across various industries.

Research & Development

For R&D purposes, its well-defined chemical structure makes it a valuable starting material for exploring new chemical entities and reaction pathways in academic and industrial laboratories.