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Glyphosate

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Identification
Molecular formula
C3H8NO5P
CAS number
1071-83-6
IUPAC name
2-[methyl-(N'-phosphonocarbamimidoyl)amino]acetic acid
State
State

Glyphosate is typically a solid at room temperature, existing most commonly in the form of a white crystalline powder.

Melting point (Celsius)
230.00
Melting point (Kelvin)
503.15
Boiling point (Celsius)
200.00
Boiling point (Kelvin)
473.15
General information
Molecular weight
169.07g/mol
Molar mass
169.0730g/mol
Density
1.7040g/cm3
Appearence

Glyphosate is a white crystalline powder. It is typically odorless and can be observed as a solid compound under ambient conditions.

Comment on solubility

Solubility of 2-[Methyl-(N'-phosphonocarbamimidoyl)amino]acetic Acid

The solubility of 2-[methyl-(N'-phosphonocarbamimidoyl)amino]acetic acid (C3H8NO5P) can be attributed to its unique chemical structure, which contains both hydrophilic and hydrophobic components. Understanding the factors influencing its solubility is essential for various applications.

Key Factors Affecting Solubility:

  • Functional Groups: The presence of the phosphonic acid group contributes to enhanced water solubility due to its ability to form hydrogen bonds with water molecules.
  • Polarity: The molecule's polar nature plays a significant role in its ability to dissolve in polar solvents like water.
  • pH Dependence: Solubility may vary with pH; therefore, the compound could ionize under certain conditions, further affecting its solubility.
  • Temperature: Increased temperature generally enhances solubility, though specific studies are required to confirm this behavior for this compound.

In conclusion, while 2-[methyl-(N'-phosphonocarbamimidoyl)amino]acetic acid exhibits favorable solubility characteristics due to its polar functional groups and potential for ionization, the exact solubility properties can vary with environmental conditions. Therefore, comprehensive studies are essential to fully understand its solubility profile in different settings.

Interesting facts

Interesting Facts about 2-[methyl-(N'-phosphonocarbamimidoyl)amino]acetic acid

2-[methyl-(N'-phosphonocarbamimidoyl)amino]acetic acid is a fascinating compound notable for its unique structure and its applications in various scientific fields. Here are some intriguing aspects of this compound:

  • Phosphonate Backbone: The presence of a phosphonate group in this compound highlights its importance in medicinal chemistry, particularly as potential therapeutic agents.
  • Versatile Interactions: With an amine functional group and carboxylic acid, this compound can participate in a variety of chemical reactions, making it a versatile building block in organic synthesis.
  • Biological Relevance: The compound could play a role in biological systems, especially considering that phosphonates are known to inhibit certain enzymes, suggesting potential applications in drug design.
  • Environmental Impact: Phosphonates can also impact environmental chemistry, influencing the cycling of nutrients in ecosystems due to their interactions with biological organisms.
  • Research Tool: Chemists often use phosphonate derivatives as tools for investigating biochemical pathways and could be crucial in the development of plant growth regulators or herbicides.

In summary, 2-[methyl-(N'-phosphonocarbamimidoyl)amino]acetic acid stands out due to its diverse functionalities and significance in both synthetic and biological chemistry. As we continue to explore the potential of compounds like this, the applications in pharmaceuticals, agriculture, and environmental science open up exciting avenues for research and development.

Synonyms
67-07-2
Glycine, N-[imino(phosphonoamino)methyl]-N-methyl-
2-(3-methyl-1-phosphonocarbamimidamido)acetic acid
N-methyl-N-(N-phosphonocarbamimidoyl)glycine
Creatine Phosphate (Phosphocreatine), >85%
DTXSID0058776
Creatinephosphate
Creatine phosphate disodium salt
Creatine phosphate; Creatinephosphoric acid
MFCD00014351
922-32-7
2-[methyl-[(E)-N'-phosphonocarbamimidoyl]amino]acetic acid
FC149077
SY069439
NS00041187
Q1984607