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1-ethyl-2-nitro-1-nitroso-guanidine

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Identification
Molecular formula
C3H7N5O3
CAS number
709-40-0
IUPAC name
1-ethyl-2-nitro-1-nitroso-guanidine
State
State

This compound usually exists in a solid state at room temperature. It is a stable substance when stored at standard ambient temperatures.

Melting point (Celsius)
112.00
Melting point (Kelvin)
385.15
Boiling point (Celsius)
196.00
Boiling point (Kelvin)
469.15
General information
Molecular weight
147.12g/mol
Molar mass
147.1010g/mol
Density
1.5000g/cm3
Appearence

1-Ethyl-2-nitro-1-nitroso-guanidine is characterized by its crystalline powder form. The powder is usually yellow or yellow-brown, depending on purity levels. It may appear slightly greenish under certain conditions due to the presence of the nitroso group.

Comment on solubility

Solubility of 1-ethyl-2-nitro-1-nitroso-guanidine

The solubility of 1-ethyl-2-nitro-1-nitroso-guanidine, a complex organic compound, can present unique challenges due to its chemical structure and functional groups. Understanding its solubility plays a crucial role in both research and practical applications. Here are some key points to consider:

  • Polarity: The presence of both nitro and nitroso groups tends to increase the overall polarity of the compound, potentially enhancing its solubility in polar solvents.
  • Solvent Compatibility: It is likely to be soluble in organic solvents like ethanol and acetone, but may have limited solubility in non-polar solvents.
  • pH Influence: Solubility can be affected by pH; for instance, increasing acidity may lead to protonation of basic sites, which can improve solubility in aqueous solutions.
  • Hydrogen Bonding: The ability of the compound to form hydrogen bonds with water or other solvents can also significantly impact solubility.

In summary, while specific solubility data for 1-ethyl-2-nitro-1-nitroso-guanidine may be scarce, understanding the factors that influence its solubility can aid in predicting its behavior in different environments. Ultimately, conducting laboratory experiments can provide valuable insights into the solubility characteristics of this intriguing compound.

Interesting facts

Interesting Facts about 1-Ethyl-2-nitro-1-nitroso-guanidine

1-Ethyl-2-nitro-1-nitroso-guanidine, often abbreviated as ENNG, is a notable chemical compound that has garnered interest in various fields of research. Here are some fascinating aspects of this compound:

  • Unique Structure: The compound contains both nitro and nitroso functional groups, which contribute to its reactivity. This unique combination makes it an intriguing subject in the study of chemical properties and reactivity patterns.
  • Chemical Behavior: Due to its nitro and nitroso substituents, ENNG exhibits interesting redox properties, allowing chemists to investigate its behavior in different chemical environments.
  • Potential Applications: Research indicates that compounds like ENNG may be used in pharmacological studies. Its structure allows scientists to explore its potential effects in biological systems, possibly leading to the development of novel therapeutic agents.
  • Role in Research: ENNG is often utilized in toxicology research to investigate mutagenic behavior. Understanding its mechanisms can help in evaluating the risks associated with nitroso compounds, which are known for their potential to induce mutations.
  • Environmental Impact: The study of ENNG contributes to our understanding of how nitroso compounds behave in the environment, leading to insights into their persistence, bioaccumulation, and overall ecological effects.

In summary, 1-ethyl-2-nitro-1-nitroso-guanidine is much more than just a chemical formula. Its complex structural chemistry, potential applications in medicine, and significance in environmental studies make it a valuable compound for ongoing research. As quoted by Renowned Chemist, "Understanding the building blocks of life, like ENNG, is fundamental to unlocking nature's secrets." This compound stands as a testament to the intricate world of chemistry, inviting further exploration and discovery.

Synonyms
CID 20238
DB-050914