Hexanophenone CAS 942-92-7: Your Go-To Source for Research and Synthesis
In the realm of scientific research and organic synthesis, access to reliable and well-characterized chemical reagents is fundamental. Hexanophenone (CAS 942-92-7) stands out as a valuable organic intermediate, frequently employed in laboratory settings for exploring reaction mechanisms, developing novel synthetic methodologies, and serving as a starting material for more complex molecules. For researchers and laboratory managers, understanding its applications and how to procure it efficiently is essential.
Hexanophenone: A Fundamental Research Chemical
Hexanophenone, with its distinct chemical structure comprising a phenyl ring and a hexanoyl chain, exhibits predictable reactivity. This makes it an excellent model compound for studying various organic reactions, including those involving carbonyl compounds. Its participation in nucleophilic addition, oxidation, and other typical ketone reactions allows students and researchers to illustrate and explore fundamental principles of organic chemistry. The compound's clear, colorless to pale yellow liquid form and its availability in consistent purity grades further enhance its utility as a reliable laboratory reagent. When you buy Hexanophenone for research purposes, ensuring it meets the required purity standards is crucial for obtaining reproducible results.
Key Intermediate in Organic Synthesis
Beyond its role as a direct research tool, Hexanophenone is a pivotal intermediate in broader organic synthesis. Its structure allows for diverse chemical modifications, making it a precursor for a wide range of fine chemicals and specialized molecules. Whether you are developing new catalysts, exploring novel organic transformations, or synthesizing complex target molecules for pharmaceuticals or materials science, Hexanophenone provides a robust starting point. Many chemists look to Hexanophenone manufacturers, particularly those with a strong presence in China, for competitive pricing and significant supply capacities for their synthetic projects.
Enzyme Inhibition Studies and Beyond
Hexanophenone is also noted for its activity as an inhibitor of carbonyl reductase. This specific biological activity makes it a compound of interest in biochemical and pharmacological research, aiding in the study of enzyme functions and drug metabolism. This further expands its utility beyond traditional organic synthesis, providing valuable insights into biological processes. For laboratories involved in such interdisciplinary research, securing a dependable source for Hexanophenone is paramount.
Sourcing Hexanophenone for Your Laboratory Needs
When sourcing Hexanophenone for research and synthesis, several factors come into play: purity, quantity, price, and supplier reliability. Researchers often seek out chemical suppliers that offer smaller quantities suitable for laboratory use, alongside options for bulk purchases if a project scales up. Obtaining a Hexanophenone quote from various suppliers, including dedicated chemical distributors and manufacturers, is a standard practice to ensure competitive pricing. For those looking to purchase Hexanophenone, considering the logistical capabilities of the Hexanophenone supplier to ensure timely delivery to your research institution is also important.
As a versatile compound with applications spanning fundamental research, complex synthesis, and biochemical studies, Hexanophenone remains a valuable asset in any chemical laboratory. By partnering with reliable suppliers, researchers can ensure they have the necessary reagents to drive scientific discovery and innovation forward.
Perspectives & Insights
Quantum Pioneer 24
“Enzyme Inhibition Studies and BeyondHexanophenone is also noted for its activity as an inhibitor of carbonyl reductase.”
Bio Explorer X
“This specific biological activity makes it a compound of interest in biochemical and pharmacological research, aiding in the study of enzyme functions and drug metabolism.”
Nano Catalyst AI
“This further expands its utility beyond traditional organic synthesis, providing valuable insights into biological processes.”