The product, High Quality alpha-(2,4-dichlorophenyl)-1h-imidazole-1-ethanol with CAS number 24155-42-8, is a chemical compound known for its high purity and excellent quality. The CAS number serves as a unique identifier for this specific compound in the chemical industry, ensuring accurate identification and traceability.
Regarding its physical and chemical properties, detailed laboratory analysis shows that it has specific melting point, boiling point, and solubility characteristics. These properties are crucial for various applications as they determine how the compound behaves under different conditions. For example, its solubility in certain solvents can affect its performance in chemical reactions or formulations.
In terms of quality control, strict manufacturing processes are in place to ensure that each batch of the product meets the highest standards. This high - quality assurance is reflected in its best - price offering, providing customers with a cost - effective solution without compromising on quality.
This product 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 unique chemical structure allows it to participate in specific chemical reactions that are essential for the production of medications with desired therapeutic effects.
In the field of agrochemicals, it may play a role in the development of pesticides or fungicides. The compound's properties can help in formulating products that are effective in controlling pests and preventing the growth of fungi on crops, thus contributing to higher agricultural yields.
Moreover, in the research and development of new materials, it can be used as a building block for creating novel polymers or other advanced materials with specific properties. Scientists and researchers can utilize its chemical reactivity to design and synthesize materials with improved performance in areas such as strength, durability, and conductivity.
When using this product, it is essential to follow strict safety protocols. Always wear appropriate personal protective equipment (PPE), such as gloves, safety glasses, and a lab coat, to prevent direct contact with the compound. Ensure that the work area is well - ventilated to avoid the inhalation of fumes.
In a laboratory or industrial setting, accurate measurement is crucial. Use calibrated measuring instruments to obtain the correct amount of the product for your specific application. When handling the product, be gentle to avoid spills or splashes. If a spill occurs, immediately follow the appropriate spill - clean - up procedures, which may involve using absorbent materials and disposing of the contaminated waste properly.
For chemical reactions, carefully control the reaction conditions, including temperature, pressure, and reaction time. Refer to relevant chemical literature or seek professional advice to ensure the optimal reaction process.
Case Study 1: Pharmaceutical Synthesis
In a pharmaceutical company, this compound was used as an intermediate in the synthesis of an antifungal drug. The company followed a well - designed synthetic route, where the product was reacted with other reagents under specific reaction conditions. After a series of purification steps, the final drug product was obtained with high purity and yield. The use of this high - quality intermediate significantly improved the overall efficiency of the drug synthesis process and reduced production costs.
Case Study 2: Agrochemical Application
An agrochemical research team incorporated this compound into a new fungicide formulation. They conducted field trials on tomato crops infected with a common fungal disease. The results showed that the fungicide containing this compound was highly effective in controlling the disease, reducing the disease incidence by over 80% compared to the control group. This success led to the further development and commercialization of the new fungicide.
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