High Purity 2-Amino-5,6-dihydro-4H-cyclopenta[b]thiophene-3-carbonitrile CAS: 70291-62-2

Discover a critical heterocyclic intermediate for your pharmaceutical research and development. This high-quality compound, 2-Amino-5,6-dihydro-4H-cyclopenta[b]thiophene-3-carbonitrile (CAS: 70291-62-2), offers exceptional purity and stability, making it an ideal choice for demanding synthetic applications. We are a trusted supplier in China, providing reliable access to essential building blocks.

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Key Advantages of Our Chemical Intermediates

Exceptional Purity Levels

We ensure our 2-Amino-5,6-dihydro-4H-cyclopenta[b]thiophene-3-carbonitrile meets stringent purity standards (95%min), critical for R&D success and reliable manufacturing processes. Partner with a leading manufacturer for consistent quality.

Consistent Supply Chain

As a dedicated supplier, we maintain robust inventory management to guarantee timely delivery of CAS: 70291-62-2, supporting your project timelines and production schedules.

Expert Technical Support

Leverage our expertise in fine chemical intermediates. We provide comprehensive technical data to assist you in your research and procurement decisions. Buy with confidence from a knowledgeable partner.

Applications in Advanced Chemistry

Pharmaceutical Synthesis

This compound is a vital intermediate in the synthesis of various pharmaceutical agents, contributing to the development of new therapeutic molecules. We are a go-to supplier for R&D labs.

Organic Chemistry Research

As a versatile heterocyclic building block, it is frequently utilized in academic and industrial research for exploring novel organic reactions and synthesizing complex molecular architectures. Find this compound when you purchase for research.

Fine Chemical Manufacturing

Its specific structure makes it a valuable component in the production of specialized fine chemicals, supporting various industrial applications. Enquire about our price and bulk availability.

Material Science Development

The unique properties of thiophene derivatives can be leveraged in the development of new materials, including optoelectronic applications. Consult with our team to explore its potential.