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Phosphonium, (difluoromethyl)triphenyl-, bromide is an organic compound with the chemical formula C19H16BrF2P. It is a colorless to yellow crystalline powder that is used in various scientific research applications. This compound is synthesized through a specific method that involves the reaction between triphenylphosp...
Phosphonium, (difluoromethyl)triphenyl-, bromide is an organic compound with the chemical formula C19H16BrF2P. It is a colorless to yellow crystalline powder that is used in various scientific research applications. This compound is synthesized through a specific method that involves the reaction between triphenylphosphine and difluoromethyl bromide.
Phosphonium, (difluoromethyl)triphenyl-, bromide is widely used in scientific research applications. It is used as a reagent in organic synthesis, particularly in the synthesis of heterocyclic compounds. It is also used in the synthesis of various pharmaceuticals and agrochemicals. Additionally, Phosphonium, (difluoromethyl)triphenyl-, bromide is used as a catalyst in various chemical reactions.
The mechanism of action of Phosphonium, (difluoromethyl)triphenyl-, bromide is not fully understood. However, it is believed to act as a nucleophile in various chemical reactions. It can also act as a Lewis acid catalyst in certain reactions.
There is limited information available on the biochemical and physiological effects of Phosphonium, (difluoromethyl)triphenyl-, bromide. However, it is known to be toxic and can cause irritation to the skin, eyes, and respiratory system. It should be handled with care and proper protective equipment should be worn when working with this compound.
One advantage of using Phosphonium, (difluoromethyl)triphenyl-, bromide in lab experiments is its high reactivity. It can be used as a powerful nucleophile and Lewis acid catalyst, making it useful in various chemical reactions. However, one limitation is its toxicity and potential health hazards. It should be handled with care and proper safety precautions should be taken when working with this compound.
There are many future directions for the use of Phosphonium, (difluoromethyl)triphenyl-, bromide in scientific research. One potential direction is its use in the synthesis of new heterocyclic compounds for pharmaceutical and agrochemical applications. Additionally, it could be used as a catalyst in new chemical reactions. Further research is needed to fully understand the mechanism of action and potential applications of this compound.
Conclusion:
Phosphonium, (difluoromethyl)triphenyl-, bromide is a useful compound in scientific research applications. It is synthesized through a specific method and can be used as a reagent, catalyst, and nucleophile in various chemical reactions. However, it should be handled with care due to its toxicity and potential health hazards. Further research is needed to fully understand the potential applications and mechanism of action of this compound.
Product Name : | (Difluoromethyl)triphenylphosphonium bromide | ||
CAS No. : | 58310-28-4 | Molecular Weight : | 393.20 |
MDL No. : | MFCD33021715 | Purity/ Specification : | |
Molecular Formula : | C19H16BrF2P | Storage : | Inert atmosphere,2-8°C |
Boiling Point : | - |
GHS Pictogram : | |||
Signal Word : | Warning | Precautionary Statements : | P261-P305+P351+P338 |
UN# : | N/A | Class : | N/A |
Hazard Statements : | H302-H315-H319-H335 | Packing Group : | N/A |