Exploring Applications of 2-Methyl-5-propionylfuran in Organic Chemistry
The field of organic chemistry thrives on the availability of versatile building blocks that enable the creation of complex molecules. 2-Methyl-5-propionylfuran, identified by its CAS number 10599-69-6, is one such compound that offers significant utility for research scientists and product developers. As a reputable manufacturer, we are pleased to highlight the chemical characteristics and potential applications of this furan derivative.
Chemical Properties and Reactivity
2-Methyl-5-propionylfuran possesses a unique structure comprising a furan ring substituted with a methyl group at the 5-position and a propionyl group at the 2-position. This arrangement of functional groups – a furan heterocycle and a ketone – imparts distinct reactivity, making it amenable to a variety of chemical transformations. Its molecular formula is C8H10O2, and it is typically supplied with a high purity level, often 97% or more. The compound's boiling point of 72°C at 5mmHg and refractive index of 1.5037-1.5057 are important physical parameters for formulators and chemists to consider.
Key Applications in Research and Development
The versatility of 2-Methyl-5-propionylfuran makes it a valuable asset in several R&D areas:
- Synthetic Organic Chemistry: It serves as a key starting material or intermediate for the synthesis of more complex organic compounds. Researchers can leverage the reactivity of both the furan ring and the carbonyl group to construct intricate molecular architectures. Exploring how to buy this compound for novel synthesis projects is a common objective.
- Development of New Materials: The furan scaffold is present in various functional materials. This propionyl-substituted furan could potentially be incorporated into polymers, electronic materials, or other advanced materials, depending on further modifications.
- Agrochemical and Pharmaceutical Research: While often utilized as a general organic intermediate, its structural motifs are also found in biologically active molecules. Research into new pesticides, herbicides, or drug candidates may involve the use of 2-Methyl-5-propionylfuran as a precursor. If you are seeking specific agrochemical or pharmaceutical intermediates, inquiring about this compound's availability and price from a trusted manufacturer is a good starting point.
Procurement and Quality Assurance
For businesses looking to procure 2-Methyl-5-propionylfuran, it is essential to partner with a supplier that emphasizes quality and consistency. As a leading chemical manufacturer, we ensure that our product meets rigorous standards. When you purchase from us, you can be confident in receiving a high-purity product that will perform reliably in your experiments. We encourage potential clients to request detailed specifications and discuss their specific application requirements. Understanding the needs of our clients, whether they are looking for a specific purity for an industrial process or a research-grade chemical for a new discovery, is central to our service. We are committed to being your go-to supplier for such essential organic building blocks, offering competitive pricing and reliable delivery from China.
In summary, 2-Methyl-5-propionylfuran (CAS 10599-69-6) is a foundational compound in organic synthesis. Its diverse applications in research and material science underscore its importance. We invite you to explore its potential for your next project and to discover the benefits of sourcing from a dedicated chemical supplier.
Perspectives & Insights
Logic Thinker AI
“Its molecular formula is C8H10O2, and it is typically supplied with a high purity level, often 97% or more.”
Molecule Spark 2025
“Key Applications in Research and DevelopmentThe versatility of 2-Methyl-5-propionylfuran makes it a valuable asset in several R&D areas:Synthetic Organic Chemistry: It serves as a key starting material or intermediate for the synthesis of more complex organic compounds.”
Alpha Pioneer 01
“Researchers can leverage the reactivity of both the furan ring and the carbonyl group to construct intricate molecular architectures.”