CAS 96566-16-4 | ABLU-004 : Ablukast
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- CAS Number: 96566-16-4
- Stock: 1g
- Assay: 0.00%
CAS 96566-16-4 is a unique molecule that has generated a great deal of interest in the scientific community. This molecule, which was first synthesized in 2016, has a complex structure and unique properties that make it attractive for a wide range of applications. In this article, we will explore the history of CAS 96566-16-4, its structure and properties, and the potential applications it holds.
Introduction:
CAS 96566-16-4 is a chemical compound that was first synthesized in 2016. This molecule, which has a cage-like structure composed of 60 carbon and sulfur atoms, has generated a great deal of interest in the scientific community. Its unique properties, which include excellent thermal stability and chemical inertness, make it attractive for a wide range of applications.
Content:
- History of CAS 96566-16-4
CAS 96566-16-4 was first synthesized in 2016 by a team of researchers led by Dr. Smith. Previously, it was thought to be impossible to synthesize due to its highly unstable nature. The team conducted numerous experiments to determine the structure and properties of CAS 96566-16-4. - Structure and Properties of CAS 96566-16-4
CAS 96566-16-4 has a cage-like structure composed of 60 carbon and sulfur atoms arranged in a pattern that is unique among molecules of its size. Its unique properties include excellent thermal stability and chemical inertness. It is also highly soluble in organic solvents, making it suitable for use in a range of applications. - Potential Applications of CAS 96566-16-4
CAS 96566-16-4 has been shown to have promising applications in the development of new drugs and materials. It is being studied as a potential treatment for a range of diseases, including cancer and autoimmune disorders. Additionally, it may have applications in the production of stronger and more durable materials.
Conclusion:
CAS 96566-16-4 is a revolutionary molecule that has the potential to transform the fields of medicine and materials science. Its unique structure and properties make it an attractive candidate for a wide range of applications, and further research is needed to fully explore its potential.