1-Cyclopentylethanone: Properties, Applications, and Synthesis of a Versatile Organic Intermediate
Discover the essential properties and diverse applications of 1-Cyclopentylethanone, a key organic intermediate widely used in chemical synthesis and catalysis.
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1-Cyclopentylethanone
1-Cyclopentylethanone is a valuable organic chemical intermediate, recognized for its role in various chemical transformations. As a reliable supplier in China, we offer high-purity 1-Cyclopentylethanone for your research and development needs. Its unique structure makes it an excellent building block in organic synthesis, contributing to the development of novel compounds.
- Explore the key applications of 1-Cyclopentylethanone in Suzuki coupling reactions, a crucial process in creating complex organic molecules.
- Understand the chemical properties, including a boiling point of 151-156℃ and a density of 0.913, essential for effective use in synthesis.
- Learn about the product's solubility, miscibility with water, and ideal storage temperature of 2-8°C for maintaining optimal quality.
- Leverage 1-Cyclopentylethanone as a foundational component for creating advanced materials and active pharmaceutical ingredients.
Advantages of Using This Product
Versatile Chemical Reactivity
The ketone functional group and cyclopentyl ring provide 1-Cyclopentylethanone with versatile reactivity, making it an ideal building block for various organic synthesis pathways. This characteristic is vital for achieving complex molecular structures.
Key Role in Catalysis
As a ligand for Suzuki coupling, 1-Cyclopentylethanone plays a critical role in facilitating carbon-carbon bond formation, a cornerstone of modern organic chemistry and a key aspect of high-performance chemical synthesis.
High Purity and Quality
We ensure the highest purity of 1-Cyclopentylethanone, guaranteeing reliable and reproducible results in your chemical processes, whether for research or larger-scale production.
Key Applications
Suzuki Coupling
Utilize 1-Cyclopentylethanone as a ligand in Suzuki coupling reactions, a highly efficient method for synthesizing biaryl compounds and other complex organic structures.
Organic Synthesis
Employ 1-Cyclopentylethanone as a versatile building block in the synthesis of diverse organic molecules, including pharmaceuticals and specialty chemicals, leveraging its unique structural features.
Material Science Research
Investigate the potential of 1-Cyclopentylethanone in developing new materials by incorporating its structure into polymers or advanced functional molecules.
Flavor and Fragrance Industry
While primarily an industrial chemical, its structural motif could be explored for potential applications in the flavor and fragrance sector due to its ketone functionality.