High-Purity (R,R)-1,1'-Bis(hydroxy(phenyl)methyl)ferrocene CAS 174689-60-2: Your Trusted Pharmaceutical Intermediate Supplier in China

Discover the critical role of (R,R)-1,1'-Bis(hydroxy(phenyl)methyl)ferrocene (CAS: 174689-60-2) in advancing pharmaceutical synthesis. As a premier manufacturer and supplier in China, we provide this essential chemical intermediate with guaranteed high purity and competitive pricing. Secure your supply chain with us.

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Advantages of Sourcing (R,R)-1,1'-Bis(hydroxy(phenyl)methyl)ferrocene from Us

Guaranteed Purity and Quality

Our (R,R)-1,1'-Bis(hydroxy(phenyl)methyl)ferrocene maintains a minimum purity of 97%, crucial for demanding pharmaceutical synthesis applications. As a reputable manufacturer in China, we prioritize quality control at every step to ensure product consistency.

Competitive Pricing from a Direct Supplier

By purchasing directly from our manufacturing facility in China, you benefit from cost-effective pricing for (R,R)-1,1'-Bis(hydroxy(phenyl)methyl)ferrocene. We aim to provide excellent value to our B2B clients, making high-quality intermediates accessible.

Reliable Supply Chain and Logistics

As a dedicated supplier, we ensure a stable and timely supply of (R,R)-1,1'-Bis(hydroxy(phenyl)methyl)ferrocene. We understand the importance of a dependable supply chain for your production schedules and offer flexible packaging options to meet your bulk purchase requirements.

Key Applications for (R,R)-1,1'-Bis(hydroxy(phenyl)methyl)ferrocene

Pharmaceutical Synthesis

This high-purity ferrocene derivative is a critical building block for synthesizing active pharmaceutical ingredients (APIs). Its specific chiral structure is vital for creating complex molecules with desired therapeutic effects.

Organic Chemistry Research

Researchers in organic chemistry frequently utilize (R,R)-1,1'-Bis(hydroxy(phenyl)methyl)ferrocene for developing novel synthetic methodologies and exploring new chemical transformations. Its unique organometallic structure offers diverse reactivity.

Chiral Ligand Development

The chiral nature of this compound makes it an excellent candidate for the development of asymmetric catalysts and chiral ligands, essential for enantioselective synthesis in the fine chemical industry.

Materials Science Exploration

Ferrocene derivatives often find applications in materials science, including the development of advanced polymers and functional materials. This specific compound may contribute to novel material properties.