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  • Exploring the Properties and Applications of CAS 202647-50-9 Compounds in Industry

Dec . 22, 2024 22:23 Back to list

Exploring the Properties and Applications of CAS 202647-50-9 Compounds in Industry



Understanding the Compound with CAS Number 202647-50-9


CAS Number 202647-50-9 refers to a chemical compound known as 4-Methoxy-N-(4-methylphenyl)benzamide. This compound falls under the category of amides, which are derivatives of carboxylic acids. Amides are well-known in the fields of organic chemistry and biochemistry due to their significant biological activity and utility in various applications, including pharmaceuticals, agricultural chemicals, and material science.


The structural formula of 4-Methoxy-N-(4-methylphenyl)benzamide reveals its complexity and functional groups. The presence of the methoxy group (-OCH3) contributes to its uniqueness, providing distinct electronic properties that can enhance its reactivity and interaction with biological targets. This compound is particularly interesting for researchers because of its potential applications in medicinal chemistry.


Understanding the Compound with CAS Number 202647-50-9


Research has indicated that variations in the substituents on the aromatic rings of amides can lead to different biological activities. For example, the 4-methylphenyl group may impart certain lipophilic properties, potentially influencing the compound’s ability to traverse cell membranes. This permeability is vital for drug-like properties, affecting how well the compound can reach its target within the body.


cas 2647-50-9

cas 2647-50-9

Additionally, the role of the methoxy group is worth noting. Methoxy-substituted compounds have been shown to exhibit various biological effects, including anti-inflammatory and analgesic activities. Such properties make this compound a candidate for further exploration in medicinal chemistry, particularly for developing new drugs that target specific pathways related to pain or inflammation.


In the context of synthetic organic chemistry, the synthesis of 4-Methoxy-N-(4-methylphenyl)benzamide can be executed through established methods involving the amide formation reaction. Such reactions typically involve the coupling of a carboxylic acid derivative with an amine, resulting in the formation of the amide bond. The synthetic route chosen can influence yields and the success of isolating the desired product.


Another critical aspect regarding compounds like 4-Methoxy-N-(4-methylphenyl)benzamide is their safety and environmental impact. Before utilizing a new compound in pharmaceuticals or other applications, it is essential to conduct thorough toxicity assessments and environmental studies. Regulatory bodies, such as the Environmental Protection Agency (EPA) and the European Chemicals Agency (ECHA), require rigorous testing to ensure compounds do not pose risks to human health or the environment.


As interest in novel compounds continues to grow, researchers are also exploring the potential biotechnological applications of amides. Some studies have indicated that specific amides can serve as inhibitors or activators of enzymes, opening new avenues for therapeutic interventions. The ability to manipulate the functional groups on the amide can lead to compounds with tailored properties suited for specific biochemical targets.


In conclusion, CAS Number 202647-50-9 represents an intriguing compound in the family of amides with potential applications in medicinal chemistry. The presence of methoxy and methyl groups suggests a range of reactivity and biological activity that warrants further investigation. As the scientific community continues to explore the complexities of organic compounds, understanding and leveraging their unique properties could lead to significant advancements in drug development and other industrial applications. The future of this compound holds promise, underscoring the importance of continuous research in the field of organic and medicinal chemistry.


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