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1,2,3-Tribromobenzene

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Identification
Molecular formula
C6H3Br3
CAS number
591-33-3
IUPAC name
1,2,3-tribromobenzene
State
State

At room temperature, 1,2,3-tribromobenzene is in a solid state, forming crystalline structures.

Melting point (Celsius)
51.00
Melting point (Kelvin)
324.15
Boiling point (Celsius)
273.00
Boiling point (Kelvin)
546.15
General information
Molecular weight
314.80g/mol
Molar mass
314.8250g/mol
Density
2.1490g/cm3
Appearence

1,2,3-Tribromobenzene appears as a solid crystalline powder. It typically presents a white to off-white color and forms needle-like or platelike crystals. Its appearance can be used in differentiating it from isomers with different bromine substitution patterns on the benzene ring.

Comment on solubility

Solubility of 1,2,3-Tribromobenzene

1,2,3-Tribromobenzene, with the chemical formula C6H3Br3, presents interesting solubility characteristics due to its molecular structure and the presence of bromine atoms. This compound is classified as a halogenated aromatic hydrocarbon, and its solubility properties can be summarized as follows:

  • Water Solubility: 1,2,3-Tribromobenzene is insoluble in water. Its nonpolar aromatic nature leads to limited interaction with polar water molecules.
  • Organic Solvents: It demonstrates good solubility in organic solvents such as hexane, toluene, and chloroform, making it useful in various chemical applications.
  • Temperature Effects: The solubility of 1,2,3-tribromobenzene in organic solvents can be influenced by temperature; as temperatures increase, solubilization typically improves.

In summary, while 1,2,3-tribromobenzene is not soluble in water, it finds compatibility with various organic solvents, reflecting the general trend observed in many aromatic compounds. The presence of multiple bromine substituents enhances its nonpolar nature, further emphasizing the importance of solvent choice in solubility.

Interesting facts

Interesting Facts about 1,2,3-Tribromobenzene

1,2,3-Tribromobenzene is a fascinating chemical compound that falls under the category of brominated aromatic hydrocarbons. Here are some engaging aspects of this compound:

  • Structure and Stability: The presence of three bromine atoms on the benzene ring not only alters its reactivity but also enhances its stability. This substitution leads to distinct chemical properties compared to non-brominated benzene derivatives.
  • Applications in Organic Synthesis: 1,2,3-Tribromobenzene serves as an important intermediate in organic synthesis, often used in the preparation of various pharmaceuticals and agrochemicals, showcasing the compound's utility in practical applications.
  • Research Interest: Due to its halogenated nature, researchers are increasingly interested in exploring the environmental impact and degradation pathways of this compound. Studies investigate how tribromobenzenes behave in various ecological settings and their potential effects on health.
  • Physical Properties: Compounds like 1,2,3-tribromobenzene have distinct solvent properties, making them useful in chromatography techniques and other applications where solubility manipulation is key.
  • Chemical Behavior: The substitution of bromine, a strong electron-withdrawing group, significantly influences the electrophilic aromatic substitution reactions, making 1,2,3-tribromobenzene a subject of study in reaction mechanisms.

In conclusion, 1,2,3-tribromobenzene is more than just a chemical compound; it serves as a pivotal player in various chemical reactions and research fields. Its unique properties make it a cherished subject of study for chemists hoping to innovate in both industrial applications and environmental assessments.

Synonyms
1,2,3-TRIBROMOBENZENE
608-21-9
Benzene, 1,2,3-tribromo-
UNII-JOM0P099JJ
JOM0P099JJ
DTXSID70870676
DTXCID70818376
833-773-5
TRIBROMOBENZENE
28779-08-0
MFCD00192668
1,2,3-Tribromo-benzene
UNII-X6M410KFKD
EINECS 249-211-1
1,2,3-Tribrombenzol
X6M410KFKD
SCHEMBL355898
ZB1097
AKOS003626103
AB89751
AC-20996
AS-40726
SY051264
CS-0197964
NS00047504
T3329
Q27281604