
The product is High Quality N,N-Dipropyl-2-methyl-3-nitrophenylethanamine with the CAS number 91374-23-1. It is known for its low price while still maintaining a high - quality standard. The chemical formula of this compound is an important parameter. Unfortunately, without further in - depth research, the exact molecular weight and other physical and chemical properties such as melting point, boiling point, and solubility in different solvents need more specialized laboratory analysis. However, we can say that it conforms to a certain level of quality control to be labeled as 'High Quality'.
N,N - Dipropyl - 2 - methyl - 3 - nitrophenylethanamine may have various uses in the field of organic synthesis. It can serve as an intermediate in the synthesis of more complex organic compounds. For example, in the pharmaceutical industry, it could potentially be used as a building block for the development of new drugs. The nitro group on the phenyl ring can be reduced to an amino group, which is a common functional group in many drugs. In addition, it may also find applications in the field of material science. It could be used to modify polymers or other materials to impart certain properties such as enhanced solubility or reactivity.
When using N,N - Dipropyl - 2 - methyl - 3 - nitrophenylethanamine, it is crucial to follow strict safety procedures. First, wear appropriate personal protective equipment, including gloves, safety glasses, and a lab coat. This product should be handled in a well - ventilated area, preferably under a fume hood to avoid inhalation of any vapors. It should be stored in a cool, dry place away from heat sources, direct sunlight, and incompatible substances. When weighing or transferring the product, use clean and dry glassware to prevent contamination. In a reaction setup, add the compound slowly and carefully as per the reaction protocol, and monitor the reaction conditions such as temperature and pressure continuously.
Case 1: Pharmaceutical Synthesis
A research team was working on developing a new anti - inflammatory drug. They used N,N - Dipropyl - 2 - methyl - 3 - nitrophenylethanamine as an intermediate. First, they reduced the nitro group of the compound to an amino group using a suitable reducing agent. The resulting amine was then reacted with a carboxylic acid derivative to form an amide linkage. After a series of purification steps, they obtained a potential lead compound for the anti - inflammatory drug. The use of this compound significantly simplified the synthesis route and reduced the cost of the overall process.
Case 2: Material Modification
A materials science group was trying to improve the solubility of a particular polymer in organic solvents. They grafted N,N - Dipropyl - 2 - methyl - 3 - nitrophenylethanamine onto the polymer backbone. The propyl groups on the amine part of the compound increased the hydrophobicity of the polymer, making it more soluble in non - polar organic solvents. This modification improved the processability of the polymer and expanded its potential applications in coating and membrane - making industries.
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