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Pharmaceutical Intermediates Tetraphenylphosphonium Iodide CAS 2065-67-0

Tetraphenylphosphonium iodide is an organic compound that belongs to the quaternary phosphonium salts family. It is composed of a central phosphorus atom bonded to four phenyl groups and an iodide ion. This compound is widely used in various fields due to its unique properties and versatile applications.
  • CAS #:

    2065-67-0
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    99%
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Products Description

Tetraphenylphosphonium iodide is an organic compound that belongs to the quaternary phosphonium salts family. It is composed of a central phosphorus atom bonded to four phenyl groups and an iodide ion. This compound is widely used in various fields due to its unique properties and versatile applications.

Function

Tetraphenylphosphonium iodide serves as a valuable precursor in organic synthesis, particularly in the preparation of phosphonium salts and organophosphorus compounds. Its primary function is as a quaternizing agent, where it can react with various nucleophiles to form phosphonium derivatives. Additionally, it can be used as a catalyst in certain chemical reactions.

Application

The versatility of tetraphenylphosphonium iodide makes it suitable for a range of applications in different scientific disciplines. In organic chemistry, it is employed in the synthesis of biologically active compounds, pharmaceuticals, and fine chemicals. The compound is also utilized in polymer chemistry as a stabilizer and a cross-linking agent. Furthermore, it finds application as a photoactive material in optoelectronics and as an additive in electrolytes for energy storage devices.

In the field of biology, tetraphenylphosphonium iodide is used in membrane research to study mitochondrial function and evaluate membrane potential. It is a valuable tool for investigating the role of ion transport and membrane permeability in cellular processes.

In summary, tetraphenylphosphonium iodide is a versatile compound with diverse applications in organic synthesis, polymer chemistry, optoelectronics, and biological research. Its quaternizing properties and reactivity make it a valuable reagent for the preparation of various phosphonium derivatives, contributing to advancements in multiple scientific fields.

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