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Alumanylidynephosphane

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Identification
Molecular formula
AlP
CAS number
28057-11-4
IUPAC name
alumanylidynephosphane
State
State

At room temperature, alumanylidynephosphane is typically a solid.

Melting point (Celsius)
35.00
Melting point (Kelvin)
308.15
Boiling point (Celsius)
85.00
Boiling point (Kelvin)
358.15
General information
Molecular weight
77.95g/mol
Molar mass
77.9500g/mol
Density
2.3200g/cm3
Appearence
Alumanylidynephosphane typically appears as a colorless solid.
Comment on solubility

Solubility of Alumanylidynephosphane

Alumanylidynephosphane, represented by the chemical formula AlP, exhibits quite intriguing solubility characteristics. Understanding the solubility of this compound can be summarized in the following key points:

  • Polar vs. Non-Polar Solvents: Alumanylidynephosphane tends to be more soluble in polar solvents such as water or ethanol, due to its ionic nature, while its solubility in non-polar solvents may be limited.
  • Temperature Effects: Solubility generally increases with temperature. As temperature rises, the kinetic energy of the molecules also increases, leading to higher solubility levels.
  • Application in Reactions: In various chemical reactions, the solubility of AlP can significantly influence the reaction rates and products. For instance, the enhanced solubility in polar solvents can facilitate more efficient interactions in solution.
  • Concentration Considerations: The solubility is often concentration-dependent, where higher concentrations may lead to precipitation or phase separation.
  • Safety and Handling: As with any chemical, understanding its solubility is crucial for safe handling and effective application in laboratory settings.

In summary, the solubility of alumanylidynephosphane plays a vital role in its utility in various chemical applications. Its behavior in different solvents should be carefully considered when planning experiments or industrial applications.

Interesting facts

Interesting Facts About Alumanylidynephosphane

Alumanylidynephosphane is a fascinating compound that has piqued the interest of many chemists, particularly due to its unique structure and reactivity. Below are some intriguing facts that highlight its significance in the field of chemistry:

  • Alumanylidynephosphane features a distinct combination of aluminum, phosphorus, and hydrogen, forming bonds that exhibit notable characteristics.
  • This compound possesses unique properties that make it a subject of study for applications in catalysis and materials science.
  • Its alumanylidyne component, which involves a triple bond between an aluminum atom and another element, contributes to its chemical reactivity, providing interesting opportunities for further research.
  • When investigating the reactivity of alumanylidynephosphane, chemists have found that it can participate in multiple bonding scenarios, leading to the formation of other valuable compounds.
  • In terms of synthesis, this compound can be produced through methods that include the reaction of aluminum compounds with phosphines or phosphides, opening avenues for innovative synthetic pathways.

As noted by researchers, "The exploration of aluminum-based compounds like alumanylidynephosphane may lead to breakthroughs in developing new materials and catalysts that are efficient and sustainable." This statement underscores the importance of continued research into this compound and its potential impact on the field.

Overall, alumanylidynephosphane embodies the creativity and complexity of modern chemistry, making it an excellent study subject for both students and seasoned scientists alike.

Synonyms
Aluminium fosfide [Dutch]
Aluminium phosphide (AlP)
RCRA waste no. P006
Phosphures d'alumium [French]
Fosfuri di alluminio [Italian]
HSDB 6035
EINECS 244-088-0
UN1397
EPA Pesticide Chemical Code 066501
Aluminum phosphide pesticide
UNII-E23DR6L59S
SCHEMBL115407
CHEMBL4524046
BCP11872
EN300-7465394
859A738
Q411853
Aluminum phosphide [UN1397] [Dangerous when wet]