The product we are introducing is High Quality 5 - Bromovaleric acid with the CAS number 2067 - 33 - 6. This chemical compound is known for its high purity and excellent quality at a very competitive price. Chemically, 5 - Bromovaleric acid has a molecular formula of C₅H₉BrO₂ and a molecular weight of approximately 181.03 g/mol. It is a colorless to light - yellow liquid at room temperature with a certain characteristic odor. The boiling point of 5 - Bromovaleric acid is around 242 - 245 °C, and its density is about 1.45 g/cm³. This product is typically available in various packaging sizes to meet different customer needs, such as 1kg, 5kg, and 25kg drums.
5 - Bromovaleric acid has a wide range of applications in different industries. In the pharmaceutical industry, it serves as an important intermediate in the synthesis of various drugs. It can be used to introduce specific functional groups into drug molecules, which is crucial for enhancing the pharmacological properties of drugs. For example, it can be used in the synthesis of some anti - inflammatory drugs and central nervous system drugs.
In the field of organic synthesis, 5 - Bromovaleric acid is a valuable building block. It can participate in a variety of chemical reactions, such as esterification, amination, and substitution reactions. Through these reactions, more complex organic compounds can be synthesized, which have potential applications in materials science, agrochemicals, and other fields.
In addition, it also has some applications in the field of fragrance and flavor. Some derivatives of 5 - Bromovaleric acid can be used to create unique scents and flavors, adding special characteristics to perfumes and food products.
When using 5 - Bromovaleric acid, it is necessary to follow strict safety procedures. First, make sure you are wearing appropriate personal protective equipment, such as safety glasses, gloves, and a lab coat. This chemical should be used in a well - ventilated area, preferably in a fume hood, to avoid inhalation of vapors.
For general chemical reactions, the amount of 5 - Bromovaleric acid used should be determined according to the reaction stoichiometry. Usually, it is added to the reaction system slowly, and the reaction temperature and time should be carefully controlled. After the reaction, appropriate purification steps should be carried out to obtain the desired product. If you are using it for research purposes, it is recommended to refer to relevant literature and experimental protocols to ensure the accuracy and reproducibility of the experiment.
Case 1: Pharmaceutical Synthesis
A pharmaceutical company was engaged in the development of a new anti - inflammatory drug. They used 5 - Bromovaleric acid as an intermediate in the synthesis process. By reacting 5 - Bromovaleric acid with a specific amine compound under certain reaction conditions, they were able to obtain an important intermediate of the target drug. After several subsequent reaction steps and purification processes, the final drug product was successfully synthesized. The use of 5 - Bromovaleric acid in this case not only ensured the smooth progress of the synthesis process but also improved the yield and purity of the final product.
Case 2: Organic Material Synthesis
A research group in the field of materials science was working on the synthesis of a new type of polymer material. They used 5 - Bromovaleric acid to modify the polymer backbone. Through a series of reactions, the bromine group in 5 - Bromovaleric acid was introduced into the polymer structure, which changed the physical and chemical properties of the polymer. The resulting polymer material showed better mechanical properties and thermal stability, which has potential applications in the field of engineering plastics.
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