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Disperse Yellow 7

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Identification
Molecular formula
C24H16O4
CAS number
6300-37-4
IUPAC name
2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione
State
State

In its pure form at room temperature, Disperse Yellow 7 is a solid. It is used industrially in its solid form, often dissolved into a textile medium during processing.

Melting point (Celsius)
225.00
Melting point (Kelvin)
498.15
Boiling point (Celsius)
760.00
Boiling point (Kelvin)
1 033.15
General information
Molecular weight
356.38g/mol
Molar mass
356.3580g/mol
Density
1.4400g/cm3
Appearence

Disperse Yellow 7, a type of anthraquinone dye, typically appears as a yellow crystalline powder. It has excellent coloring properties and is used in textile applications, especially for synthetic fibers. The vivid yellow hue makes it stand out among other dyes.

Comment on solubility

Solubility of 2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione

The solubility of 2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione is a complex topic, particularly due to its polycyclic aromatic structure. This compound's solubility can vary significantly based on several factors:

  • Solvent Polarity: Generally, organic compounds with high molecular weight and aromatic character show different solubility behaviors in polar vs. non-polar solvents. 2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione is expected to exhibit better solubility in non-polar solvents such as chloroform and toluene.
  • Temperature Effects: As with many organic compounds, an increase in temperature often enhances solubility. Note that heating solvents can improve the solubilization of this compound.
  • Functional Groups: The presence of *dioxo* groups can lead to intermolecular interactions that may hinder solubility in certain conditions, especially with polar solvents.

Moreover, in practical applications, solubility plays a crucial role:

  1. In dye formulations, achieving a good solubility can enhance color performance.
  2. In research settings, solubility affects the compound's bioavailability and its interactions in various chemical processes.

Thus, understanding the solubility characteristics of 2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione is essential for its effective utilization in both academic and industrial applications. Always consider the solvation environment when assessing its behavior in solution!

Interesting facts

2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione: An Engaging Compound

The compound 2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione is a fascinating member of the anthraquinone family, which showcases the intricate ways in which organic compounds can be structured and behave. Here are some intriguing aspects of this compound:

  • Fluorescence: Many anthracene derivatives are known for their ability to fluoresce, making them valuable in applications ranging from organic light-emitting diodes (OLEDs) to fluorescent probes in biological imaging.
  • Versatile Applications: Due to its unique structure, this compound can be used in various fields, such as organic chemistry, materials science, and even in the production of dyes. This versatility makes it a subject of interest for researchers seeking innovative applications in technology.
  • Structural Complexity: The presence of both anthracene and dione functionalities within the same molecule adds a layer of complexity in the study of its chemical properties and reactions. This often leads to fascinating discussions among chemists about its potential reactivity.
  • Antioxidant Properties: Some studies suggest that compounds in the anthraquinone family may exhibit antioxidant properties, which can be beneficial in pharmaceutical applications.

As you dive deeper into the study of 2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione, remember that the world of chemistry is not just about formulas and reactions; it’s also about understanding the potential impacts these substances can have on technology, health, and the environment. As one chemist aptly put it, "Each compound tells us a story - we just need to learn how to listen."

Synonyms
2,2'-Dimethyl-1,1'-bianthraquinone
Dichinyl
81-26-5
Dimethyldianthronyl
7NIQ301EP9
NSC-7230
(1,1'-Bianthracene)-9,9',10,10'-tetrone, 2,2'-dimethyl-
[1,1'-Bianthracene]-9,9',10,10'-tetrone, 2,2'-dimethyl-
NSC-667253
2-methyl-1-(2-methyl-9,10-dioxoanthracen-1-yl)anthracene-9,10-dione
DTXSID1058840
NSC667253
4,4'-BIS(3-METHYLANTHRAQUINONE)
2,2'-DIMETHYL(1,1'-BIANTHRACENE)-9,9',10,10'-TETRONE
NSC 7230
EINECS 201-338-3
BRN 3178213
2,2'-Dimethyl[1,1'-bianthracene]-9,9',10,10'-tetrone
NSC7230
2,1'-bianthraquinone
2,2'-Dimethyl-1,1'-bianthracene-9,9',10,10'-tetrone
1,1'-BIANTHRACENE-9,9',10,10'-TETRAONE, 2,2'-DIMETHYL-
UNII-7NIQ301EP9
4-07-00-02895 (Beilstein Handbook Reference)
SCHEMBL769353
DTXCID0048187
SOHQSWHUIQYXPT-UHFFFAOYSA-N
AKOS001661385
1,1'-Bianthraquinone, 2,2'-dimethyl-
2,1'-bianthracene-9,9',10,10'-tetrone
NS00038113
1,9',10,10'-tetraone, 2,2'-dimethyl-
[1,9',10,10'-tetrone, 2,2'-dimethyl-
F1091-0020
WLN: L C666 BV IVJ E1 D- DL C666 BV IVJ E1
2,2'-dimethyl-[1,1'-bianthracene]-9,9',10,10'-tetraone
2-methyl-1-(2-methyl-9,10-dioxo-1-anthryl)anthracene-9,10-dione
2,2'-DIMETHYL-9H,9'H,10H,10'H-[1,1'-BIANTHRACENE]-9,9',10,10'-TETRONE
201-338-3