10-Bromodecanol CAS 53463-68-6: The Ultimate Resource for Researchers and Scientists

December 5, 2024

Abstract

This article provides an in-depth exploration of 10-Bromodecanol CAS 53463-68-6, a compound that serves as an invaluable resource for researchers and scientists. The article delves into the chemical properties, synthesis methods, applications, safety considerations, and regulatory aspects of this compound, offering a comprehensive guide for those working in various scientific disciplines.

Introduction to 10-Bromodecanol CAS 53463-68-6

10-Bromodecanol, with the CAS number 53463-68-6, is a brominated aliphatic alcohol that has gained significant attention in scientific research. Its unique chemical structure and properties make it a valuable tool for various applications, including organic synthesis, pharmaceutical development, and material science. This article aims to provide a comprehensive overview of 10-Bromodecanol, serving as a definitive resource for researchers and scientists.

Chemical Properties of 10-Bromodecanol

10-Bromodecanol is a colorless liquid with a boiling point of approximately 224°C and a melting point of -44°C. It has a molecular formula of C10H21BrO and a molecular weight of 252.12 g/mol. The compound is highly reactive and can undergo various chemical transformations, making it a versatile starting material in organic synthesis. Its bromine atom is located at the 10th carbon position of the decane chain, which can influence its reactivity and solubility in different solvents.

Synthesis Methods of 10-Bromodecanol

The synthesis of 10-Bromodecanol can be achieved through several methods, including the bromination of decane, the bromination of 1-bromodecane, and the bromination of 1-bromo-1-decanol. Each method has its own advantages and limitations, and the choice of synthesis route depends on the desired purity, yield, and cost-effectiveness. The bromination of decane, for instance, is a straightforward process but may require harsh reaction conditions and purification steps.

Applications of 10-Bromodecanol

10-Bromodecanol finds applications in various fields due to its unique chemical properties. In organic synthesis, it serves as a valuable intermediate for the preparation of brominated aliphatic compounds. It is also used in the pharmaceutical industry for the synthesis of brominated drugs and as a precursor for the development of new therapeutic agents. Additionally, 10-Bromodecanol is employed in material science for the synthesis of brominated polymers and other brominated materials.

Safety Considerations for 10-Bromodecanol

As with any chemical compound, the safe handling and storage of 10-Bromodecanol are crucial. The compound is considered hazardous due to its potential to cause skin irritation, respiratory irritation, and eye damage. Researchers and scientists should follow appropriate safety protocols, including the use of personal protective equipment, proper ventilation, and adherence to local regulations and guidelines. It is also essential to store 10-Bromodecanol in a cool, dry place away from incompatible materials.

Regulatory Aspects of 10-Bromodecanol

The production, import, and export of 10-Bromodecanol are subject to various regulations and restrictions. These regulations are in place to ensure the safe and responsible use of the compound and to protect human health and the environment. Researchers and scientists must be aware of the applicable laws and regulations in their respective countries and comply with them to avoid legal and ethical issues.

Conclusion

10-Bromodecanol CAS 53463-68-6 is a versatile and valuable compound that serves as an essential resource for researchers and scientists. Its unique chemical properties, synthesis methods, applications, safety considerations, and regulatory aspects make it a subject of significant interest in various scientific disciplines. This article has provided a comprehensive overview of 10-Bromodecanol, offering a definitive resource for those working with this compound.

Keywords: 10-Bromodecanol, CAS 53463-68-6, chemical properties, synthesis methods, applications, safety considerations, regulatory aspects, researchers, scientists.

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