N-Isopropyl hydroxylamine is an organic compound used as a high-efficiency inhibitor for free radical emulsion polymerization, a hydrazine alternative in water treatment for removing oxygen, and a chemical intermediate.
N-Isopropyl hydroxylamine acts as an, anti-scaling agent and corrosion inhibitor.
N-Isopropyl hydroxylamine is often sold as a 15% aqueous solution, appearing as a clear liquid.
CAS: 5080-22-8
MF: C3H9NO
MW: 75.11
EINECS: 225-791-1
Synonyms
IPHA;N-Isopropylhydroxylamine;N-Isopropylhydroxylamine oxalate salt;2-Propanamine, N-hydroxy-;2-hydroxylaminopropane;N-Hydroxyisopropylamine;N-Isopropylhydroxyamine;N-Hydroxy-2-propanamine
N-Isopropyl hydroxylamine is a chemical compound that can be used as a solvent for organic compounds.
N-Isopropyl hydroxylamine has been shown to have genotoxic properties, which may be due to the production of hydrogen peroxide.
N-Isopropyl hydroxylamine is also an antioxidant compound and has been shown to have anti-inflammatory effects.
N-Isopropyl hydroxylamine has been found to inhibit the growth of fibroblast cells in vitro by binding to basic fibroblast growth factor (bFGF).
N-Isopropyl hydroxylamine is stable at neutral pH and hydrochloric acid, but unstable in the presence of inorganic acids.
N-Isopropyl hydroxylamine, with the CAS number 5080-22-8, is an organic compound characterized by its hydroxylamine functional group attached to an isopropyl group.
N-Isopropyl hydroxylamine appears as a colorless to pale yellow liquid and is known for its role as a reducing agent and in various chemical syntheses.
N-Isopropyl hydroxylamine is soluble in water and polar organic solvents, which enhances its utility in chemical reactions.
N-Isopropyl hydroxylamine is often used in the synthesis of pharmaceuticals and agrochemicals, as well as in analytical chemistry for the detection of certain metal ions.
N-Isopropyl hydroxylamine exhibits moderate toxicity, necessitating careful handling and appropriate safety measures during use.
Additionally, N-Isopropyl hydroxylamine can participate in various reactions, including oxidation and condensation, making it a versatile reagent in organic synthesis.
N-Isopropyl hydroxylamine's stability and reactivity can be influenced by factors such as pH and temperature, which are important considerations in its applications.
Overall, N-Isopropyl hydroxylamine is a valuable compound in both industrial and research settings.
N-Isopropyl hydroxylamine Chemical Properties
Melting point :159-160 °C (dec.)
Boiling point: 104.9±23.0 °C(Predicted)
density: 0.886±0.06 g/cm3(Predicted)
vapor pressure: 68Pa at 25℃
pka: 14.14±0.50(Predicted)
Water Solubility: 199g/L at 25℃
InChI: InChI=1S/C3H9NO/c1-3(2)4-5/h3-5H,1-2H3
InChIKey: ODHYIQOBTIWVRZ-UHFFFAOYSA-N
LogP: -0.574 at 23℃
EPA Substance Registry System: N-Isopropyl hydroxylamine (5080-22-8)
Uses
Polymerization: Used as a highly efficient stopper and inhibitor in synthetic rubber production, such as styrene-butadiene rubber (SBR), often preferred for its effectiveness at low concentrations.
Water Treatment: Acts as an oxygen scavenger and passivator in boiler water, protecting against corrosion.
Chemical Synthesis: Serves as a reagent in the synthesis of pharmaceuticals and agrochemicals.