Taiy Chemical
9H-Fluoren-9-one
Product Name 9-Fluorenone
Synonyms:1531 9-Oxofluorene; 9H-Fluoren-9-one; Diphenylene ketone; Fluoren-9-one
CAS RN. 486-25-9
EINECS 207-630-7
Molecular Weight 180.202
Molecular Formula C13H8O
Density 1.244g/cm3
Melting Point(℃) 81-85℃
Boiling Point(℃) 341.5°C at 760 mmHg
Flash Point(℃) 144.1°C
refractive_index 1.667
Water Solubility insoluble
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Safety Description  S24/25;Details
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FAQ
What is 9H-Fluoren-9-one and what are its uses?
9H-Fluoren-9-one is a chemical compound that is commonly used in organic synthesis as a key intermediate. It is known for its high purity and stability, making it an ideal reagent for various reactions in the laboratory. This compound is widely used in the pharmaceutical, agrochemical, and materials science industries.

Can 9H-Fluoren-9-one be used in pharmaceutical research?
Yes, 9H-Fluoren-9-one is commonly used in pharmaceutical research as a building block for synthesizing novel drug candidates. Its unique structure and reactivity make it a valuable tool for medicinal chemists who are looking to develop new drugs with improved efficacy and safety profiles. Researchers can explore different synthetic routes using 9H-Fluoren-9-one to create diverse chemical libraries for drug discovery.

What are the benefits of using 9H-Fluoren-9-one in organic synthesis?
One of the main benefits of using 9H-Fluoren-9-one in organic synthesis is its versatility. This compound can undergo various transformations to yield different products, allowing chemists to access a wide range of structural motifs. Additionally, 9H-Fluoren-9-one is known for its high chemical stability, which simplifies purification and reduces side reactions during the synthesis process. Its ease of handling and storage make it a popular choice for synthetic chemists.

How can 9H-Fluoren-9-one be incorporated into materials science research?
In materials science research, 9H-Fluoren-9-one can be used to create functionalized materials with tailored properties. By modifying the chemical structure of 9H-Fluoren-9-one or incorporating it into a polymer matrix, researchers can generate materials with specific functionalities such as luminescence, conductivity, or mechanical strength. These materials have applications in optoelectronics, sensors, and biomedical devices, among others.

Are there any safety considerations when handling 9H-Fluoren-9-one in the laboratory?
As with any chemical compound, it is important to follow proper safety precautions when handling 9H-Fluoren-9-one in the laboratory. This compound should be stored in a cool, dry place away from direct sunlight and sources of heat. Researchers should wear appropriate personal protective equipment, such as gloves and safety goggles, when working with 9H-Fluoren-9-one. In case of accidental exposure or ingestion, seek medical attention immediately.
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