High-Purity 2-(Tributylstannyl)thiophene: Your Trusted Supplier for Advanced Organic Synthesis

Discover the versatile applications of 2-(Tributylstannyl)thiophene (CAS 54663-78-4) in cutting-edge organic synthesis. As a leading manufacturer and supplier, we provide high-quality intermediates essential for developing advanced materials in organic electronics and catalysis. Explore our reliable supply chain and competitive pricing for your R&D needs.

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Advantages of Sourcing Our 2-(Tributylstannyl)thiophene

Exceptional Synthesis Utility

Leverage the unique chemical reactivity of 2-(Tributylstannyl)thiophene for efficient C-C bond formation via Stille coupling, a cornerstone in many complex synthesis pathways. This makes it an ideal choice when you need to purchase high-quality reagents for your research.

Enabling Organic Electronics

This organotin compound is instrumental in the development of advanced organic electronic devices, including organic solar cells and field-effect transistors. Partner with us to buy this crucial material and advance your projects in this dynamic field.

Catalysis and Material Science Integration

Utilize 2-(Tributylstannyl)thiophene as a ligand in the synthesis of various metal complexes, which are pivotal for catalytic applications. Our product ensures the quality needed for these sophisticated processes, making us your preferred supplier.

Diverse Application Fields

Organic Synthesis

A key intermediate for constructing complex organic molecules, facilitating various coupling reactions. Explore our offerings to buy essential reagents for your synthetic strategies.

Organic Electronics

Crucial for synthesizing materials used in organic solar cells (OSCs) and organic field-effect transistors (OFETs), driving innovation in electronic device manufacturing.

Materials Science

Employed in the creation of novel materials with specific optical and electronic properties, essential for advanced research and development.

Catalysis

Serves as a valuable ligand precursor for metal-catalyzed reactions, enhancing efficiency and selectivity in chemical transformations.