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Bromine trifluoride

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Identification
Molecular formula
BrF3
CAS number
7787-71-5
IUPAC name
trifluoro-lambda3-bromane
State
State

Bromine trifluoride is typically found as a liquid at room temperature. It is highly reactive and will fume in air, forming vapors.

Melting point (Celsius)
8.80
Melting point (Kelvin)
281.95
Boiling point (Celsius)
126.00
Boiling point (Kelvin)
399.15
General information
Molecular weight
136.89g/mol
Molar mass
136.8940g/mol
Density
2.8030g/cm3
Appearence

Bromine trifluoride is a yellow-green liquid that has a pungent and acrid odor. It appears as a fuming liquid due to its high reactivity and tendency to release fumes when exposed to air.

Comment on solubility

Solubility of Trifluoro-lambda3-bromane

Trifluoro-lambda3-bromane is an intriguing compound in terms of its solubility properties. Understanding the solubility behavior of this compound can be essential for various applications and research. Here are some key points to consider:

  • Polarity: The presence of trifluoromethyl groups makes trifluoro-lambda3-bromane relatively polar, which can influence its interactions with solvents.
  • Solvent Compatibility: This compound is expected to show higher solubility in polar solvents such as acetone or dimethyl sulfoxide (DMSO), while its solubility in non-polar solvents might be significantly lower.
  • Hydrogen Bonding: The specifics of the bromine atom's involvement in hydrogen bonding with solvents will also play a role in solubility.
  • Temperature Effects: It is important to note that solubility can change with temperature; generally, increasing temperature can enhance the solubility of compounds in liquid solutions.

In summary, while the exact solubility data for trifluoro-lambda3-bromane may require experimental validation, predictions based on its molecular structure and characteristics suggest a preference for polar solvents. These insights can pave the way for more effective utilization in chemical processes.

Interesting facts

Trifluoro-lambda3-bromane: A Unique Compound

Trifluoro-lambda3-bromane is an intriguing compound that has captured the attention of chemists due to its unique properties and potential applications. Here are some fascinating facts about this fluorinated bromane:

  • Fluorine Influence: The presence of the trifluoro group can significantly alter the reactivity and stability of the bromane, making it a valuable compound in various chemical syntheses.
  • Reactive Chemistry: This compound is known for its strong oxidizing properties, which can be leveraged in organic synthesis to promote certain chemical reactions.
  • Applications in Industry: Trifluoro-lambda3-bromane can be utilized in the development of pharmaceuticals and agrochemicals, where halogenated compounds are often incorporated into active ingredients to enhance efficacy.
  • Environmental Considerations: As with many fluorinated compounds, there are ongoing discussions in the scientific community regarding the environmental impact and sustainability of using trifluoro-lambda3-bromane. Understanding its degradation pathways is crucial.
  • Research Potential: The compound is a subject of continuous research, particularly in the fields of fluorine chemistry and materials science. Its interactions with other substances can lead to the discovery of new materials with tailored properties.

In summary, trifluoro-lambda3-bromane is more than just a chemical formula. It represents a bridge between traditional chemistry and modern applications, gathering attention from researchers eager to explore its potential in diverse scientific endeavors.

Synonyms
BROMINE TRIFLUORIDE
Bromine fluoride (BrF3)
trifluoro-lambda3-bromane
UN1746
HSDB 7483
UNII-BD697HEL7X
EINECS 232-132-1
BD697HEL7X
BROMINE TRIFLUORIDE [MI]
DTXSID70894170
UN-1746
DTXCID201324211
232-132-1
bromine fluoride
7787-71-5
BrF3
Brominetrifluoride
Bromotrifluoride
bromine-trifluoride
trifluoro-$l^{3}-bromane
tris(fluoranyl)-$l^{3}-bromane
BCP04116
MFCD00042533
DB-002664
Bromine trifluoride [UN1746] [Oxidizer]
A839258
Q419784