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244007

Sigma-Aldrich

3,3,5,5-Tetramethyl-1-pyrroline N-oxide

95%

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About This Item

Empirical Formula (Hill Notation):
C8H15NO
CAS Number:
Molecular Weight:
141.21
MDL number:
UNSPSC Code:
12352100
PubChem Substance ID:
NACRES:
NA.22
Pricing and availability is not currently available.

Assay

95%

form

solid

bp

73 °C/1 mmHg (lit.)

mp

58-61 °C (lit.)

storage temp.

−20°C

SMILES string

CC1(C)CC(C)(C)[N+]([O-])=C1

InChI

1S/C8H15NO/c1-7(2)5-8(3,4)9(10)6-7/h6H,5H2,1-4H3

InChI key

GUQARRULARNYQZ-UHFFFAOYSA-N

General description

The ESR spectrum of 3,3,5,5-tetramethyl-1-pyrroline N-oxide was studied[1].

Application

3,3,5,5-Tetramethyl-1-pyrroline N-oxide was used as a spin traping reagent[2].

Storage Class Code

11 - Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

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Shing-Jong Huang et al.
Solid state nuclear magnetic resonance, 29(4), 272-277 (2005-11-09)
We show that a Gaussian-shaped pulse can be used to excite selected 1H signals in hydroxyapatite, monetite and H-Y zeolite loaded with trimethylphosphine oxide (TMPO). This selective excitation method can be incorporated into Lee-Goldburg (LG) cross-polarization to obtain useful spectral
D De Bono et al.
Free radical research, 20(5), 327-332 (1994-05-01)
The hydroxyl radical adducts of 5,5 dimethyl-1-pyrolline-N-oxide (DMPO) and 3,3,5,5 tetramethyl-1-pyrolline-N-oxide (TMPO) formed in the presence of hydrogen peroxide and FeII are normally quite stable, but in the presence of 5-20 micromolar myoglobin their ESR signals decay rapidly. This decay
E G Janzen et al.
Journal of biochemical and biophysical methods, 30(4), 239-247 (1995-11-01)
To obtain the strongest possible free radical spin adduct signal using the electron paramagnetic resonance spectroscopy-spin trapping technique, it is desirable to load an animal with the highest dose of spin trap possible. One hundred and twenty six male Sprague-Dawley
J F Torres-Roca et al.
Journal of immunology (Baltimore, Md. : 1950), 165(9), 4822-4830 (2000-10-25)
The roles of oxygen and reactive oxygen intermediates in apoptosis are unclear at present. Although oxygen and reactive oxygen intermediates are not required for the execution of apoptosis, oxygen may be involved in at least some forms of apoptosis. In
M J Davies et al.
The Biochemical journal, 240(3), 789-795 (1986-12-15)
Spin trapping using 5,5-dimethyl-1-pyrroline N-oxide (DMPO) has been used to detect and distinguish between the carbon-centred, alkoxyl, and peroxyl radicals produced during the photolytic decomposition of hydroperoxides. Photolysis of tert-butyl and cumene hydroperoxides, and peroxidized fatty acids, in toluene, with

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