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Mastering Organic Synthesis with High-Purity 3-Chloro-9H-xanthen-9-one

For chemists and researchers engaged in the field of organic synthesis, the selection of appropriate starting materials and intermediates is fundamental to achieving successful outcomes. 3-Chloro-9H-xanthen-9-one (CAS 27063-50-9) stands out as a versatile and valuable compound, widely utilized for its reactive properties and structural utility. This article explores its significance in synthesis and provides guidance on sourcing this critical chemical.

The Chemical Profile of 3-Chloro-9H-xanthen-9-one

This xanthone derivative, characterized by the chemical formula C13H7ClO2 and a molecular weight of 230.65 g/mol, presents as a solid. Its defining feature is the presence of a chlorine atom on the xanthone core, which offers a reactive handle for a variety of chemical transformations. This makes it an attractive intermediate for creating more complex molecules used in diverse fields, including materials science and pharmaceuticals.

Key Applications in Organic Synthesis

The strategic placement of the chlorine atom and the inherent reactivity of the xanthone nucleus make 3-Chloro-9H-xanthen-9-one a valuable asset in synthetic chemistry. Its applications include:

  • Nucleophilic Substitution Reactions: The chlorine atom can be readily displaced by various nucleophiles, allowing for the introduction of diverse functional groups onto the xanthone scaffold. This is a fundamental technique for building molecular complexity.
  • Cross-Coupling Reactions: It can participate in various metal-catalyzed cross-coupling reactions (e.g., Suzuki, Heck, Sonogashira), enabling the formation of new carbon-carbon bonds and the construction of elaborate organic frameworks.
  • Precursor for Specialty Chemicals: Derivatives synthesized from this compound may find use as dyes, fluorescent probes, or components in advanced materials due to the photophysical properties often associated with xanthone structures.
  • Pharmaceutical Research: As a precursor to potential therapeutic agents, it supports the ongoing exploration of new drug candidates. Researchers often look to buy this compound to investigate structure-activity relationships.

Where to Buy: The Importance of Reliable Suppliers

When seeking to purchase 3-Chloro-9H-xanthen-9-one for your laboratory or industrial needs, partnering with a reputable chemical supplier is crucial. A dependable source will not only provide the compound but also ensure its quality and consistency. Key considerations when selecting a supplier include:

  • Purity Assurance: Verify that the product meets the required purity specifications (e.g., 97% min).
  • Documentation: Ensure availability of essential documents like Safety Data Sheets (SDS) and Certificates of Analysis (CoA).
  • Order Fulfillment: Reliable logistics and timely delivery are essential for research and production schedules.
  • Pricing and Value: Compare offerings from various manufacturers to secure the best value without compromising quality. Many leading manufacturers in China offer competitive pricing for this intermediate.

Optimizing Your Synthesis Strategy

By understanding the chemical properties and synthetic potential of 3-Chloro-9H-xanthen-9-one, researchers can effectively integrate it into their synthetic strategies. Whether you are developing new materials or exploring novel pharmaceutical compounds, having a reliable source for this intermediate will significantly enhance your workflow. If you are looking for a specific price point or require bulk quantities, reaching out to established chemical suppliers is the most efficient approach.

Conclusion

3-Chloro-9H-xanthen-9-one is a cornerstone for many advanced organic synthesis projects. Its versatility and the availability of high-purity material from dedicated chemical manufacturers empower chemists to push the boundaries of molecular design. When embarking on your next synthesis, consider the strategic advantage of sourcing this critical intermediate from a trusted supplier, ensuring quality, reliability, and efficiency.

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