Introduction of CAS:29089-62-1 | TETRABUTYLPHOSPHONIUM TETRAPHENYLBORATE
Tetrabutylphosphonium Tetraphenylborate is a chemical compound with the molecular formula C40H56BP and a molecular weight of 578.67 . It is a solid at 20°C and appears as a white to almost white powder or crystal . It is used as a reference electrolyte in physical chemistry of solutions, allowing for a convenient partitioning of thermodynamic properties into single-ion contributions .
Specification of CAS:29089-62-1 | TETRABUTYLPHOSPHONIUM TETRAPHENYLBORATE
|
ITEMS |
SPECIFICATION |
|
Melt point |
227.0 to 234.0 °C |
|
Purity |
97% |
|
Form |
powder to crystal |
|
Color |
White to Almost white |
Research Application of CAS:29089-62-1 | TETRABUTYLPHOSPHONIUM TETRAPHENYLBORATE
Supramolecular Networks and Cation Exchange
Tetrabutylphosphonium Tetraphenylborate has been used in the construction of anionic networks for selective cation exchange, showing a potential in creating ordered molecular materials. The crystallization of its salt forms robust supramolecular structures, demonstrating effectiveness in including cations and neutral guests with significant volume availability. This highlights its potential in applications like zeolites and other molecular sieving materials (Malek et al., 2005).
Ion-Selective Electrode Applications
Tetrabutylphosphonium Tetraphenylborate has been evaluated for its qualities in ion-selective electrodes. Its application in PVC matrix-membrane electrodes demonstrates a Nernstian response in a wide concentration range, suggesting its use in analytical chemistry for the selective detection of various ions (Jaber et al., 1977).
Extraction and Solubility Enhancement
The compound has been used in novel extraction methods for active compounds from medicinal plants. It improves the efficiency and speed of extraction processes, offering a promising approach in the extraction of valuable biochemicals (Li et al., 2015).
Sensor Development
In the development of sensors, Tetrabutylphosphonium Tetraphenylborate has been used in poly(vinyl chloride)-based membranes for selective detection of various ions, such as vanadyl ions. Its effectiveness in maintaining crystallinity and selectivity is notable, indicating its potential in environmental and industrial monitoring applications (Jain et al., 1998).



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