Interesting facts
Interesting Facts about N,N-Dibutylnitrous Amide
N,N-Dibutylnitrous amide is a fascinating compound with diverse applications and intriguing properties. Here are some interesting highlights:
- Structural Characteristics: As a member of the amide family, this compound features a nitrous oxide moiety, which contributes to its unique chemical behavior.
- Reactivity: N,N-Dibutylnitrous amide is known for its stability under standard conditions but can react under specific circumstances, making it a subject of interest in synthetic chemistry.
- Use in Systems: This compound often serves as a precursor in various chemical syntheses and has potential applications in developing new materials, organic semiconductors, and pharmaceuticals.
- Importance in Research: Researchers are exploring its role in catalysis and as a potential solvent, which positions it as an exciting candidate for sustainable chemistry applications.
This compound exemplifies the complexity of chemical interactions in nitrous-based compounds and underscores the significance of studying such substances to unlock their potential in innovative applications. As one prominent chemist stated, "Every compound tells a story; understanding its narrative can lead us to remarkable discoveries."
In summary, N,N-dibutylnitrous amide is not just a chemical formula; it represents a gateway to understanding complex chemical systems and their practical utility in various fields.
Synonyms
N-Nitrosodibutylamine
924-16-3
Dibutylnitrosamine
N-Nitroso-di-n-butylamine
N-NITROSODI-N-BUTYLAMINE
1-Butanamine, N-butyl-N-nitroso-
N,N-Dibutylnitrosoamine
CCRIS 217
Di-N-butylnitrosoamine
N-butyl-N-nitrosobutan-1-amine
HSDB 5107
EINECS 213-101-1
BRN 1760378
DTXSID2021026
UNII-8K8942WN31
N-di-n-Butylnitrosoamine
NSC-6830
n-butyl-n-nitrosobutanamine
DTXCID101026
NSC6830
4-04-00-03389 (Beilstein Handbook Reference)
N,N-DIBUTYLNITROSOAMINE [HSDB]
N-NITROSODIBUTYLAMINE [USP-RS]
N-NITROSODI-N-BUTYLAMINE [IARC]
N-NITROSODIBUTYLAMINE (USP-RS)
N-NITROSODI-N-BUTYLAMINE (IARC)
Dinbutylnitrosamin
Dinbutylnitrosamine
NNitrosodibutylamine
NNitrosodinbutylamine
N,NDibutylnitrosoamine
N,NDinbutylnitrosamine
Butylamine, Nnitrosodi
NButylNnitroso1butamine
butylamine, N-nitrosodi
dibutylamine, N-nitroso
NButylNnitroso1butaneamine
1Butanamine, NbutylNnitroso
inchi=1/c8h18n2o/c1-3-5-7-10(9-11)8-6-4-2/h3-8h2,1-2h
un3082
ygjhzclpzazihh-uhfffaoysa-n
Nitrosodibutylamine
NDBA
N,N-dibutylnitrous amide
Dibutylnitrosoamine
Dibutylamine, N-nitroso-
DBNA
N,N-Di-n-butylnitrosamine
N,N-Dibutylnitrosamine
Butylamine, N-nitrosodi-
Di-N-butylnitrosamin
Di-n-butylnitrosamine
N-Butyl-N-nitroso-1-butanamine
N-Butyl-N-nitroso-1-butamine
N-Butyl-N-nitroso-1-butaneamine
RCRA waste number U172
NSC 6830
Nitrosodi-N-butylamine
CHEBI:82356
8K8942WN31
CAS-924-16-3
N-Dibutylnitrosamine
Di-n-butylnitrosamin [German]
RCRA waste no. U172
1-Butanamine,N-butyl-N-nitroso-
dibutyl(nitroso)amine
dibutyl-nitroso-amine
N-Nitrosodi-(n-butyl)amine
SCHEMBL606730
WLN: ONN4&4
CHEMBL354920
1,1-Dibutyl-2-oxohydrazine #
N-Nitrosodibutylamine (Standard)
Dibutylnitrosamine;NDBA;NSC 6830
Tox21_202334
Tox21_300425
MSK4913-100M
AKOS015902563
MSK4913-1000M
FN26364
HY-131113R
NCGC00248027-01
NCGC00248027-02
NCGC00254330-01
NCGC00259883-01
FN177119
MS-22887
DB-057301
HY-131113
CS-0128596
N0375
NS00000642
N-Nitrosodi-n-butylamine, analytical standard
C19277
D91692
EN300-7475958
N-Nitroso-di-n-butylamine 10 microg/mL in Methanol
N-Nitroso-N-di-n-butylamine 0.1 mg/ml in Methanol
N-Nitroso-N-di-n-butylamine 1.0 mg/ml in Methanol
N-Nitroso-di-n-butylamine 1000 microg/mL in Methanol
Q22138402
Z1255485634
N-Nitroso-di-n-butylamine Solution in Methanol, 100_g/mL
N-Nitroso-di-n-butylamine Solution in Methanol, 1000_g/mL
Solubility of N,N-Dibutylnitrous Amide
N,N-Dibutylnitrous amide, a compound with the chemical formula C6H14N2O, exhibits intriguing solubility characteristics that are worth noting:
In summary, the solubility of N,N-dibutylnitrous amide is highly dependent on the solvent used and the conditions under which it is dissolved. Understanding these characteristics is crucial for applications in organic synthesis and other chemical processes.