4-Aminoacetophenone structure
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Common Name | 4-Aminoacetophenone | ||
|---|---|---|---|---|
| CAS Number | 99-92-3 | Molecular Weight | 135.16 | |
| Density | 1.1±0.1 g/cm3 | Boiling Point | 294.8±13.0 °C at 760 mmHg | |
| Molecular Formula | C8H9NO | Melting Point | 103-107 °C(lit.) | |
| MSDS | Chinese USA | Flash Point | 132.1±19.8 °C | |
| Symbol |
GHS07 |
Signal Word | Warning | |
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A simple, rapid and reliable liquid chromatography-mass spectrometry method for determination of methotrexate in human plasma and its application to therapeutic drug monitoring.
Biomed. Chromatogr. 29 , 1197-202, (2015) A simple, rapid and reliable liquid chromatography-electrospray ionization tandem mass spectrometry method was established and validated for the determination of methotrexate in human plasma. After a straightforward protein precipitation by acetonitrile-water... |
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Synthesis of aryl semicarbazone of 4-aminoacetophenone and their anti-HIV activity.
Pharm. Acta Helv. 73(4) , 215-8, (1998) The thioureido derivative of 4-aminoacetophenone aryl semicarbazone have been prepared. These derivatives have been characterised on the basis of different physicochemical evidences. The anti-HIV-1 (HTLV-IIIB) and -HIV-2 (ROD) activity and cytotoxicity of the... |
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[Determination of p-aminoacetophenone and changes in its levels in a levorin producer depending on culture conditions].
Antibiotiki 26(8) , 566-70, (1981) A method for spectrophotometric determination of p-aminoacetophenone (p-AAP) in the mycelium and fermentation broth filtrates of organisms producing polyenic macrolide antibiotics is described. The level of p-AAP accumulation was studied as applicable to the ... |
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[Role of p-aminobenzoic acid in levorin biosynthesis].
Antibiotiki 27(7) , 493-5, (1982) The effect of p-aminobenzoic acid on the biosynthesis of levorin was studied. It was shown that in the presence of exogenic p-aminobenzoic acid the antibiotic activity increased by 11 per cent. The acid added was transformed into p-aminoacetophenone which was... |
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Synthesis and evaluation of changes induced by solvent and substituent in electronic absorption spectra of some azo disperse dyes.
Spectrochim. Acta. A. Mol. Biomol. Spectrosc. 89 , 238-42, (2012) Five azo disperse dyes were prepared by diazotizing 4'-aminoacetophenone and p-anisidine and coupling with varies N-alkylated aromatic amines. Characterization of the dyes was carried out by using UV-vis, FTIR and 1H NMR spectroscopic techniques. The electron... |
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Spectrophotometric methods for the determination of o-dihydroxybenzene derivatives.
Analyst 110(4) , 395-8, (1985)
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Identification of aromatic moieties and mycosamine in antifungal heptaenes with high-performance liquid chromatography, high-performance liquid chromatography-mass spectrometry and gas chromatography-mass spectrometry.
J. Chromatogr. A. 585(2) , 247-54, (1991) A high-performance liquid chromatographic (HPLC) method for the determination of the aromaticity of heptaene polyene antibiotics has been developed. The released aromatic moiety of the heptaene polyenes aureofungin, candicidin, candimycin, hamycin and trichom... |
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Involvement of proton transfer in the reductive repair of DNA guanyl radicals by aniline derivatives.
Org. Biomol. Chem. 3(5) , 917-23, (2005) The most easily oxidized sites in DNA are the guanine bases, and major intermediates produced by the direct effect of ionizing radiation (ionization of the DNA itself) are electron deficient guanine species. By means of a radiation chemical method (gamma-irra... |
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Hydrogen bonding in the bromide salts of 4-aminobenzoic acid and 4-aminoacetophenone.
Acta Crystallogr. C 64(Pt 4) , o226-9, (2008) In the title compounds, 4-carboxyanilinium bromide, C(7)H(8)NO(2)(+) x Br(-), (I), and 4-acetylanilinium bromide, C(8)H(10)NO(+) x Br(-), (II), each asymmetric unit contains a discrete cation with a protonated amino group and a halide anion. Both crystal stru... |
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p-Aminoacetophenone as a reagent for the colorimetric determination of cerium(IV).
Talanta 14 , 861, (1967) With a solution ofp-aminoacetophenone, cerium(IV) gives a purple colour which can be used for its detection and determination. The limits of identification and dilution are 1.0 mug and 1 in 50000 respectively. Beer's law is obeyed in the range 14-350 mug. The... |