Nombre del producto:sodium 9,10-dioxo-9,10-dihydroanthracene-1-sulfonate

IUPAC Name:sodium 9,10-dioxo-9,10-dihydroanthracene-1-sulfonate

CAS:128-56-3
Fórmula molecular:C14H7NaO5S
Pureza:95%
Número de catálogo:CM131996
Peso molecular:310.25

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Detalles del producto

Núm. De CAS :128-56-3
Fórmula molecular:C14H7NaO5S
Punto de fusión:-
Código de sonrisas:O=S(C(C=CC=C1C(C2=C3C=CC=C2)=O)=C1C3=O)([O-])=O.[Na+]
Densidad:
Número de catálogo:CM131996
Peso molecular:310.25
Punto de ebullición:
Nº Mdl:MFCD00037145
Almacenamiento:Store at room temperature.

Category Infos

Anthracenes
Anthracene is a condensed aromatic hydrocarbon containing three rings. The center of the three rings of anthracene is in a straight line, which is the isomer of phenanthrene. The chemical activity of the 9 and 10 positions in the anthracene molecule is relatively high. It is oxidized with nitric acid to generate 9, 10-anthraquinone, which is an important intermediate for the synthesis of anthraquinone dyes. Anthracene can also act as a conjugated diene in a Diels-Alder reaction with maleic anhydride.

Column Infos

Aromatic Hydrocarbons
Aromatic hydrocarbons are cyclic, planar compounds that resemble benzene in electronic configuration and chemical behavior. Benzene has the molecular formula C6H6 and is the simplest aromatic hydrocarbon. The carbon atoms in benzene are linked by six equivalent σ bonds and six π bonds.
Benzenes
Benzene is an important organic compound with the chemical formula C6H6, and its molecule consists of a ring of 6 carbon atoms, each with 1 hydrogen atom. Benzene is a sweet, flammable, colorless and transparent liquid with carcinogenic toxicity at room temperature, and has a strong aromatic odor. It is insoluble in water, easily soluble in organic solvents, and can also be used as an organic solvent itself. The ring system of benzene is called benzene ring, and the structure after removing one hydrogen atom from the benzene ring is called phenyl. Benzene is one of the most important basic organic chemical raw materials. Many important chemical intermediates can be derived from benzene through substitution reaction, addition reaction and benzene ring cleavage reaction.

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