N-Methyl-9,10-ethanoanthracene-9(10H)-propionamide - Names and Identifiers
N-Methyl-9,10-ethanoanthracene-9(10H)-propionamide - Physico-chemical Properties
Molecular Formula | C20H21NO
|
Molar Mass | 291.38684 |
Melting Point | 158-161℃ |
N-Methyl-9,10-ethanoanthracene-9(10H)-propionamide - Upstream Downstream Industry
N-Methyl-9,10-ethanoanthracene-9(10H)-propionamide - Introduction
N-Methyl-9, 10-ethanoanthrene-9 (10h)-propionamide is an organic compound with the chemical formula C20H17NO. The following is a description of the properties, uses, preparation and safety information of the compound:
Nature:
N-Methyl-9, 10-ethanoanthrene-9 (10h)-propionamide is a solid, yellow crystalline at ambient temperature. It has a melting point of about 170-172 ° C. At atmospheric pressure. It is soluble in solvents such as chloroform, dimethyl sulfoxide, etc.
Use:
N-Methyl-9, 10-ethanoanthrene-9 (10h)-propionamide is often used as an intermediate in organic synthesis for the synthesis of other compounds. It can be used to synthesize dyes, drugs or chemical reagents with fluorescent properties.
Method:
N-Methyl-9, the preparation method of 10-ethanoanthrene-9 (10h)-propionamide can be prepared by the reaction of 9,10-ethananthracene and formamide. First, 9,10-ethananthracene is reacted with an excess of formamide to give N-methyl -9,10-ethananthracene -9,10-dicarboxamide. The N-Methyl-9, 10-ethanoanthrene-9 (10h)-propionamide, can then be prepared by a reduction or amide conversion reaction of the dimethylamide.
Safety Information:
Regarding N-Methyl-9, the specific safety information of 10-ethanoanthrene-9 (10h)-propionamide needs to refer to the relevant safety data sheet to ensure its correct use and handling. Because the compound may be toxic or irritating to humans, use it with appropriate laboratory safety precautions, including wearing personal protective equipment and avoiding inhalation or contact with skin and eyes, and operate in well-ventilated areas. At the same time, please store it in a cool and dry place and avoid contact with oxidants.
Last Update:2024-04-09 21:54:55