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Dibutyl methylphosphonate

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Identification
Molecular formula
C9H21O4P
CAS number
6990-43-8
IUPAC name
1-[butoxy(methyl)phosphoryl]oxybutane
State
State

At room temperature, Dibutyl methylphosphonate is a liquid.

Melting point (Celsius)
-78.50
Melting point (Kelvin)
194.65
Boiling point (Celsius)
285.00
Boiling point (Kelvin)
558.15
General information
Molecular weight
194.22g/mol
Molar mass
194.2180g/mol
Density
1.0070g/cm3
Appearence

Dibutyl methylphosphonate is a colorless to pale yellow liquid. It is typically clear and has a characteristic mild odor.

Comment on solubility

Solubility of 1-[butoxy(methyl)phosphoryl]oxybutane

The solubility of 1-[butoxy(methyl)phosphoryl]oxybutane, with its complex structure, can be influenced by several factors. This compound contains multiple functional groups that can interact with polar and non-polar solvents. Here are some key points to consider:

  • Polarity: The presence of the phosphoryl group suggests moderate polarity, which facilitates solubility in polar solvents such as water and alcohols.
  • Hydrophobic Characteristics: The butoxy chain adds hydrophobic character, indicating that it may also be soluble in non-polar solvents like hydrocarbons.
  • Temperature Effects: Solubility may increase with temperature, making it easier for the compound to dissolve in a given solvent at higher temperatures.

In general, the solubility of chemical compounds can be described by the principle "like dissolves like." Therefore, 1-[butoxy(methyl)phosphoryl]oxybutane is likely to exhibit:

  • Good solubility in polar solvents due to its functional groups.
  • Moderate solubility in non-polar solvents because of its longer hydrocarbon chains.

Experimental solubility data are crucial in determining the exact solubility profile of this compound, yet understanding the general behavior based on its structure can provide valuable insight.

Interesting facts

Interesting Facts about 1-[butoxy(methyl)phosphoryl]oxybutane

1-[butoxy(methyl)phosphoryl]oxybutane is a fascinating compound that showcases the complexities of organophosphorus chemistry. Here are some captivating insights about this molecule:

  • Biological Significance: This compound belongs to a class of organophosphates, which are often studied for their interactions with biological systems. They can potentially influence neurotransmitter function and play a role in pesticide activity.
  • Applications in Agriculture: Due to its phosphorous component, 1-[butoxy(methyl)phosphoryl]oxybutane may find applications in the development of novel agricultural chemicals, including herbicides and insecticides.
  • Structure and Reactivity: The presence of a butoxy group contributes to the compound's reactivity and solubility characteristics, making it versatile in various synthetic applications.
  • Synthetic Pathways: Scientists are exploring innovative methods to synthesize this compound, emphasizing greener chemistry practices that minimize waste.
  • Potential for Drug Development: The unique structure presents potential as a lead compound for the synthesis of pharmaceuticals, specifically targets related to neurological disorders.

In conclusion, 1-[butoxy(methyl)phosphoryl]oxybutane exemplifies the intersection of chemistry and practical applications, highlighting the importance of organophosphates in both environmental and medical fields. As research continues, the understanding of its behavior and effects will likely expand, providing further insights into its utility.

Synonyms
DIBUTYL METHYLPHOSPHONATE
2404-73-1
Dibutyl methanephosphonate
DTXSID70178785
Methylphosphonic acid, dibutyl ester
Phosphonic acid, methyl-, dibutyl ester
Phosphonic acid, methyl-, o,o-dibutyl ester
DTXCID30101276
npnbltjgrbycjb-uhfffaoysa-n
1-[butoxy(methyl)phosphoryl]oxybutane
di-n-butyl methylphosphonate
Di-n-butyl methanephosphonate
MFCD00015242
SCHEMBL575461
methyl-phosphonic acid dibutyl ester
1-(Butoxy-methylphosphoryl)oxybutane
BBL103643
STL557453
AKOS017343692
DB-249955