The product, High Quality 2-(n-ethyl-m-toluidino)ethano with CAS number 91 - 88 - 3, is a chemical compound known for its high purity and excellent quality. The CAS number serves as a unique identifier for this chemical, which is crucial for accurate identification in scientific research, regulatory compliance, and chemical management.
The high - quality aspect of this product implies that it has undergone strict quality control measures during production. It adheres to industry - recognized standards, ensuring consistent performance and reliability. The best - price feature makes it an attractive option for both small - scale and large - scale users, as it offers cost - effectiveness without sacrificing quality.
2-(n-ethyl-m-toluidino)ethano has a wide range of applications in different industries. In the pharmaceutical industry, it can be used as an intermediate in the synthesis of various drugs. Its chemical structure allows it to participate in specific chemical reactions, facilitating the creation of new pharmaceutical compounds with desired therapeutic effects.
In the research field, it is often used as a reagent for chemical experiments. Scientists can use it to study reaction mechanisms, develop new synthetic methods, and explore the properties of new compounds. Additionally, in some specialty chemical manufacturing processes, this product can be used as a key ingredient to produce high - performance materials with unique physical and chemical properties.
When using High Quality 2-(n-ethyl-m-toluidino)ethano, it is essential to follow proper safety procedures. First, users should wear appropriate personal protective equipment (PPE), such as gloves, safety glasses, and a lab coat, to prevent direct contact with the chemical. The product should be stored in a cool, dry, and well - ventilated area away from sources of ignition and incompatible substances.
For handling, it is recommended to use suitable containers and transfer equipment. When measuring the product, use accurate measuring tools to ensure the correct dosage. During the reaction process, carefully control the reaction conditions, such as temperature, pressure, and reaction time, according to the specific experimental or production requirements. After use, properly dispose of any waste materials in accordance with local environmental regulations.
Case 1: Pharmaceutical Research
A pharmaceutical research team was working on the development of a new anti - inflammatory drug. They used 2-(n-ethyl-m-toluidino)ethano as an intermediate in the synthesis process. By carefully designing the reaction steps and optimizing the reaction conditions, they were able to synthesize a new compound with high anti - inflammatory activity. In the pre - clinical trials, this new compound showed promising results, demonstrating the potential of our product in pharmaceutical research.
Case 2: Specialty Chemical Manufacturing
A specialty chemical company was aiming to produce a high - performance polymer. They incorporated 2-(n-ethyl-m-toluidino)ethano into the polymer synthesis process. The addition of this compound improved the mechanical properties of the polymer, such as its strength and flexibility. The resulting polymer was used in the production of high - end electronic components, meeting the strict performance requirements of the electronics industry.
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