The product, Factory Supply 1,3-dimethyl-3,4,5,6-tetrahydro-2(1H)-pyrimidinone with the CAS number 7226-23-5, is offered at the best price. This chemical compound, also known as DMPU, is a colorless to pale - yellow liquid. Its molecular formula is C₆H₁₂N₂O, and it has a molecular weight of approximately 128.17 g/mol. The boiling point of 1,3 - dimethyl - 3,4,5,6 - tetrahydro - 2(1H) - pyrimidinone is around 225 - 226°C, and its density is about 1.06 g/cm³ at 25°C. It is soluble in water and many organic solvents, which makes it a versatile compound in various chemical reactions.
1,3 - dimethyl - 3,4,5,6 - tetrahydro - 2(1H) - pyrimidinone (DMPU) has a wide range of applications in different industries. In the pharmaceutical industry, it is used as a solvent in the synthesis of various drugs. Its high polarity and good solvating properties allow it to dissolve a variety of organic and inorganic substances, facilitating chemical reactions and purification processes. In the field of organic synthesis, DMPU serves as an aprotic polar solvent. It can stabilize certain reaction intermediates and improve the reaction rate and selectivity. It is also used in polymer chemistry as a reaction medium for the synthesis of polymers with specific structures and properties.
When using 1,3 - dimethyl - 3,4,5,6 - tetrahydro - 2(1H) - pyrimidinone, it is important to follow safety protocols. Always wear appropriate personal protective equipment, such as gloves and goggles. In a laboratory or industrial setting, measure the required amount of DMPU accurately using calibrated measuring tools. When using it as a solvent in a chemical reaction, add it slowly to the reaction mixture under appropriate stirring conditions. The reaction temperature and pressure should be carefully controlled according to the specific reaction requirements. After the reaction is completed, the product can be separated from the DMPU by appropriate separation techniques, such as distillation or extraction.
Case 1: Pharmaceutical Synthesis
In a project for the synthesis of a new anti - cancer drug, DMPU was used as a solvent. The traditional solvents used in the initial trials were not able to dissolve all the reactants completely, resulting in low reaction yields. By using DMPU, all the reactants were uniformly dissolved, and the reaction was able to proceed smoothly. The reaction yield increased from 30% to over 70%, and the purity of the final product was also significantly improved.
Case 2: Polymer Synthesis
A research team was working on synthesizing a high - performance polymer for use in electronic devices. DMPU was used as the reaction medium. The use of DMPU allowed for better control of the polymerization reaction, resulting in a polymer with a more uniform molecular weight distribution. The mechanical and electrical properties of the polymer were also enhanced, meeting the requirements for use in advanced electronic applications.
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