Interesting facts
Interesting Facts about N,N-Diisopropylnitrous Amide
N,N-Diisopropylnitrous amide is a fascinating chemical compound in the world of organic chemistry. Here are some intriguing aspects of this compound:
- Structure and Stability: This compound features a nitroso functional group, which is significant in its chemical behavior. The presence of two isopropyl groups enhances its stability and solubility in organic solvents.
- Applications in Synthesis: N,N-Diisopropylnitrous amide serves as a versatile reagent in various chemical reactions. It's commonly used in organic synthesis, particularly in the preparation of amides and other nitrogenous compounds.
- Role in Nitrosation Reactions: This compound is valuable in nitrosation processes, providing a source of nitrous oxide. Nitrosation is a significant pathway in the formation of N-nitroso compounds, which have implications in both synthetic chemistry and toxicology.
- Environmental Impact: Understanding the behavior of compounds like N,N-diisopropylnitrous amide is crucial, as they can participate in atmospheric reactions and contribute to issues like air pollution and ozone depletion.
- Potential Hazards: Special care must be taken when handling this compound, as it can be hazardous. Knowledge of proper safety protocols is vital to mitigate risks associated with its use.
In summary, N,N-diisopropylnitrous amide embodies the intersection of stability and utility in organic chemistry, making it a noteworthy subject of study for both budding chemists and seasoned professionals. As the field of chemistry continues to evolve, the importance of understanding such compounds only grows.
Synonyms
N-NITROSODIISOPROPYLAMINE
601-77-4
Diisopropylnitrosamine
Nitrosodiisopropylamine
Diisopropyl-N-nitrosamine
Diisopropylnitrosamin
Diisopropylamine, N-nitroso-
2-Propanamine, N-(1-methylethyl)-N-nitroso-
NSC 336
Diisopropylnitrosamin [German]
Diethylamine, 1,1'-dimethyl-N-nitroso-
AFI1E104OF
BRN 0635986
NSC-336
DTXSID20208844
N-isopropyl-N-nitrosopropan-2-amine
N-NITROSODIISOPROPYLAMINE [USP-RS]
N-NITROSODIISOPROPYLAMINE (USP-RS)
NDIPA
DiisopropylNnitrosamine
Diisopropylamine, Nnitroso
diisopropylamine, N-nitroso
1,1'DimethylNnitrosodiethylamine
DTXCID70131335
N(1Methylethyl)Nnitroso2propanamine
2Propanamine, N(1methylethyl)Nnitroso
2Propanamine, N(1methylethyl)Nnitroso (9CI)
2-Propanamine, N-(1-methylethyl)-N-nitroso-(9CI)
Diethylamine, 1,1'dimethylNnitroso (6CI,7CI,8CI)
Diethylamine, 1,1'-dimethyl-N-nitroso-(9CI,7CI,8CI)
690-128-9
inchi=1/c6h14n2o/c1-5(2)8(7-9)6(3)4/h5-6h,1-4h
N-Nitroso-di-iso-propylamine
N,N-di(propan-2-yl)nitrous amide
N,N-diisopropylnitrous amide
N-(1-Methylethyl)-N-nitroso-2-propanamine
nitrosobis(propan-2-yl)amine
DI-I-PROPYLNITROSOAMINE
N-nitroso diisopropyl amine
N-Nitrosodiisopropylamine (1mg/mL in Methanol)
UNII-AFI1E104OF
2-Propanamine,N-(1-methylethyl)-N-nitroso-
1,1'-Dimethyl-N-nitrosodiethylamine
N-Nitroso-di-isopropylamine
SCHEMBL562494
CHEMBL115700
N,N-Diisopropyl N-Nitrosoamine
NSC336
N-Nitrosodiisopropylamine (NdiPA)
1,1-Diisopropyl-2-oxohydrazine #
WLN: 1Y1&NNO&&Y1&1
Diethylamine,1'-dimethyl-N-nitroso-
AKOS006283542
2-Propanamine, N-isopropyl-N-nitroso-
FN26362
AS-75846
DB-231561
NS00007753
D77969
EN300-7456222
N-Nitrosodiisopropylamine 0.1 mg/ml in Methanol
N-Nitrosodiisopropylamine 1.0 mg/ml in Methanol
N-Nitroso-di-isopropylamine 10 microg/mL in Methanol
N-Nitroso-di-isopropylamine 100 microg/mL in Methanol
Q26840769
Z1198147490
Solubility of N,N-Diisopropylnitrous Amide
N,N-Diisopropylnitrous amide, with the chemical formula C5H10N2O, is an organic compound whose solubility in various solvents is a point of interest for chemical scientists. The compound displays distinct solubility characteristics based on its molecular structure:
According to solubility principles, "*like dissolves like*," meaning that polar solubility agents will effectively dissolve polar compounds more readily than non-polar solvents. Therefore, understanding the solubility behavior of N,N-Diisopropylnitrous amide is crucial for its applications in chemical synthesis and industrial processes.