Hexanophenone, with the CAS number 942 - 92 - 7, is a high - quality chemical compound. Chemically, its molecular formula is C12H16O. It has a certain molecular weight that can be accurately calculated based on the atomic weights of carbon (C), hydrogen (H), and oxygen (O) in its formula. This product is known for its high purity and is offered at the best price in the market.
Physically, it may exist in a specific state at room temperature, such as a liquid or a solid. Its melting point and boiling point are important physical properties that can affect its handling and storage. The density of hexanophenone is also a crucial parameter, which can help in accurately measuring and dosing the product.
Hexanophenone has a wide range of uses in various industries. In the field of organic synthesis, it serves as an important intermediate. It can be used in the synthesis of more complex organic compounds, which are further applied in the production of pharmaceuticals, agrochemicals, and specialty chemicals.
In the pharmaceutical industry, derivatives of hexanophenone may have potential therapeutic activities. They can be used in the research and development of new drugs, targeting specific diseases or biological pathways. In the fragrance industry, it can contribute to the creation of unique scents due to its distinct chemical structure and odor - related properties.
When using hexanophenone, strict safety precautions should be followed. It is recommended to wear appropriate personal protective equipment, such as gloves and safety glasses, to avoid direct contact with the skin and eyes. In a laboratory or industrial setting, it should be handled in a well - ventilated area to prevent the inhalation of vapors.
For accurate dosing, it can be measured using appropriate laboratory equipment, such as pipettes or burettes for liquid forms. When adding hexanophenone to a reaction system, it should be added slowly while stirring to ensure uniform mixing. After use, any remaining product should be properly stored in a sealed container away from heat and light sources.
Case 1: Organic Synthesis in a Pharmaceutical Company
A pharmaceutical company was conducting research on a new anti - inflammatory drug. Hexanophenone was used as an intermediate in the multi - step synthesis process. The first step involved reacting hexanophenone with a specific reagent under carefully controlled reaction conditions, including temperature, pressure, and reaction time. After several purification steps, the intermediate product derived from hexanophenone was successfully obtained. This intermediate was then further modified and combined with other components to form the final drug candidate. The high purity of the hexanophenone used ensured the high quality of the intermediate and ultimately the effectiveness of the drug - development process.
Case 2: Fragrance Creation in a Perfumery
A perfumery was aiming to create a new and unique fragrance. Hexanophenone was added in a small amount to the fragrance formula. Its distinct odor profile contributed a warm and slightly sweet undertone to the overall fragrance. The perfumers carefully adjusted the concentration of hexanophenone to achieve the desired olfactory effect. Through multiple rounds of testing and adjustments, a highly - sought - after fragrance product was successfully launched in the market, thanks in part to the contribution of hexanophenone.
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