2-(2-Chlorophenyl)-2-hydroxyacetonitrile: High Purity Chemical Intermediate Supplier & Manufacturer in China

Discover the essential properties, synthesis, and applications of 2-(2-Chlorophenyl)-2-hydroxyacetonitrile (CAS: 13312-84-0). As a leading manufacturer and supplier, we provide high-quality chemical intermediates vital for pharmaceutical and agrochemical industries. Request your quote and sample today.

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Advantages of Sourcing from Our Chemical Manufacturing Facility

Consistent Product Quality

Our commitment to quality means that researchers and procurement managers can always buy 2-(2-Chlorophenyl)-2-hydroxyacetonitrile with confidence, knowing it meets exact specifications for their synthesis projects.

Competitive Pricing & Value

As a dedicated supplier, we offer competitive price points for 2-(2-Chlorophenyl)-2-hydroxyacetonitrile, enabling cost-effective sourcing for both small-scale research and large-volume industrial demands.

Expert Technical Support

Leverage our deep understanding of organic chemistry to resolve any technical queries regarding the synthesis, handling, or application of this chemical intermediate, ensuring a smooth procurement and usage process.

Key Applications Driving Innovation

Pharmaceutical Intermediates

This compound serves as a critical building block in the synthesis of various Active Pharmaceutical Ingredients (APIs), contributing to the development of new therapeutic agents. We are a trusted manufacturer for your pharmaceutical needs.

Agrochemical Synthesis

Its unique structure makes it valuable in the creation of advanced agrochemicals, offering solutions for crop protection and yield enhancement. Find a reliable supplier for your agrochemical intermediates.

Advanced Organic Synthesis

As a versatile organic chemical intermediate, it is employed in complex synthesis pathways to create specialized molecules with unique properties, supporting diverse research and industrial applications.

Material Science Research

The functional groups present allow for its exploration in designing supramolecular polymers and liquid crystals, pushing the boundaries of material science innovation.