High Quality N-Butyl Vinyl Ether with CAS number 111 - 34 - 2 is a colorless liquid with a characteristic odor. It has a molecular formula of C₆H₁₂O and a molecular weight of approximately 100.16 g/mol. The boiling point of this product is around 94 - 95 °C, and its density is about 0.778 g/mL at 25 °C. It is insoluble in water but soluble in common organic solvents such as ethanol, ether, and acetone. The purity of our N - Butyl Vinyl Ether is high, which ensures its stable performance in various applications.
N - Butyl Vinyl Ether has a wide range of applications in different industries. In the field of polymer chemistry, it serves as a monomer for the synthesis of various polymers and copolymers. These polymers can be used in coatings, adhesives, and elastomers, providing excellent adhesion, flexibility, and chemical resistance. For example, in the production of acrylic coatings, adding N - Butyl Vinyl Ether can improve the weatherability and gloss of the coating film.
In the pharmaceutical industry, it can be used as an intermediate in the synthesis of certain drugs. Its unique chemical structure allows it to participate in various chemical reactions, facilitating the construction of complex drug molecules. Additionally, it can also be used as a solvent in some special pharmaceutical formulations.
In the field of organic synthesis, N - Butyl Vinyl Ether is a valuable reagent for a variety of reactions, such as Diels - Alder reactions and Michael addition reactions. These reactions are important for the construction of carbon - carbon and carbon - oxygen bonds, which are crucial steps in the synthesis of many organic compounds.
When using N - Butyl Vinyl Ether, it is necessary to take appropriate safety precautions. It should be stored in a cool, dry, and well - ventilated place, away from sources of ignition and heat. When handling this product, it is recommended to wear appropriate personal protective equipment, such as gloves and goggles, to avoid direct contact with the skin and eyes.
In the laboratory, when using it as a reagent in chemical reactions, the reaction conditions should be carefully controlled. The amount of N - Butyl Vinyl Ether added should be accurately measured according to the reaction requirements. Stirring speed, reaction temperature, and reaction time also need to be optimized to ensure the high efficiency and selectivity of the reaction.
In industrial production, when using N - Butyl Vinyl Ether as a raw material for polymer synthesis, it is necessary to pay attention to the polymerization process control. Factors such as the ratio of monomers, initiator concentration, and reaction pressure can affect the properties of the final polymer product.
Case 1: A coating manufacturer was looking to improve the performance of their acrylic coatings. They added a certain amount of N - Butyl Vinyl Ether to their coating formula. After testing, they found that the weatherability of the coating film was significantly improved. The coating could withstand long - term exposure to sunlight, rain, and other environmental factors without significant degradation. The gloss of the coating also became more stable, providing a more aesthetically pleasing appearance for the coated objects.
Case 2: A pharmaceutical research team was synthesizing a new anti - inflammatory drug. They used N - Butyl Vinyl Ether as an intermediate in the multi - step synthesis process. By carefully controlling the reaction conditions at each step, they successfully synthesized the target drug molecule with high yield and purity. The use of N - Butyl Vinyl Ether in this synthesis route simplified the reaction steps and improved the overall efficiency of the synthesis.
Case 3: An organic synthesis laboratory was conducting research on the construction of a complex natural product - like molecule. They employed N - Butyl Vinyl Ether in a Diels - Alder reaction. Through optimization of reaction parameters, they obtained the desired product with high regioselectivity and stereoselectivity. This case demonstrated the versatility of N - Butyl Vinyl Ether in organic synthesis.
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