Dithizone (CAS 60-10-6): High-Purity Chelating Agent from China's Leading Manufacturer

Discover the exceptional chelating capabilities of Dithizone, a critical reagent for heavy metal analysis and a key component in various scientific and industrial applications. As a premier manufacturer and supplier in China, we offer reliable access to this essential chemical, ensuring consistent quality and competitive pricing for your procurement needs.

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Key Advantages of Sourcing Dithizone

Exceptional Chelating Performance

Dithizone (CAS 60-10-6) excels as a chelating agent, forming stable complexes with numerous heavy metals. This property makes it an indispensable reagent for accurate trace metal analysis, allowing you to buy with confidence for your critical applications.

High Purity & Reliability

We supply Dithizone that meets stringent ACS grade specifications, guaranteeing high purity essential for sensitive analytical procedures and pharmaceutical research. Partner with our manufacturer for consistent product quality.

Cost-Effective Sourcing from China

Secure your Dithizone supply at competitive prices. As a direct supplier in China, we offer cost efficiencies that benefit your budget, making it easier to purchase the quantities you need for ongoing projects.

Diverse Applications of Dithizone

Heavy Metal Analysis

As a sensitive reagent for metals like lead and mercury, Dithizone is widely used in analytical chemistry for quantitative determination, supporting environmental testing and industrial quality control needs.

Medical Research

Dithizone plays a crucial role in assessing the purity of human pancreatic islet preparations for type 1 diabetes transplantation, highlighting its importance in medical advancements.

Laboratory Reagent

Available as ACS grade, Dithizone is a staple in research laboratories for various qualitative and quantitative analyses, ensuring reliable results when you buy from reputable suppliers.

Chelating Agent in Organic Synthesis

Beyond analysis, Dithizone's chelating properties are explored in organic synthesis and coordination chemistry, offering potential for new material development.