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  • phenols  (2)
  • effect of gases  (1)
  • 1
    ISSN: 1436-5073
    Keywords: MBTH ; phenols ; oxidative coupling ; colour reaction ; spectrophotometry
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract The oxidative coupling reactions of unsubstituted phenol, 4-cresol, 2,6-xylenol and another fourteen substituted phenols with MBTH in alkaline medium containing potassium hexacyanoferrate (III) as the oxidant were examined by spectrophotometry. The maximum yield and stability of coloured species was attained at optimum pH 9.0±0.5. Stoichiometry of the reactions involving a four-electron transfer was confirmed. The coloured products were stable in an aqueous alkaline medium containing 50% (V/V) of a water-miscible organic solvent and they could be quantitatively extracted into chloroform. Absorption maxima λmax of the reaction products ranged between 495 nm and 610 nm depending on the phenol structure and their molar absorptivities fell within the range 2,500–47,000L mol−1 cm−1 in aq. 50% ethanol. The calibration graphs were rectilinear for 2 to 20 μM phenol or 2,6-xylenol (r = 0.9994–0.9997; n = 6) and the RSD values were ≈1.8% (n=10) when determining 10 μmol L−1 of the analytes. The reactivity of the phenols with MBTH (and hence the yield of the coloured species in alkaline medium) depending on the analyte structure decreased in the order: 2,6-dialkylphenols or 4-halogenated 2,6-dialkylphenols〉2-alkyl, 2-alkoxy or 2-arylphenols and l-naphthol〉unsubstituted phenol or 2-naphthol≅2-halogenated phenols〉4-alkylphenols and 4-halogenated phenols〉2-nitrophenol〉2,4-or 3,4-dialkylphenols. For some 4-halogenated phenols the elimination of halogen upon coupling with the MBTH was observed.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1436-5073
    Keywords: MBTH reagent ; phenols ; colour reactions ; quinoneimine dyes ; oxidative coupling
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract The following model compounds for the study of the oxidative coupling reactions of 2-hydrazono-3-methylbenzothiazoline (MBTH) with phenolic compounds were prepared: thep-coupling products of the reagent with phenol and 2,6-xylenol and theo-coupling product withp-cresol. The proposed structure of the dyes was confirmed. In strongly polar and ionic media the azobetaine form of the products predominates, and in non-polar media the azine structure. The principal physico-chemical properties of the products were determined and the results contributed to formulation of the course of the coupling reaction, and to optimization of the conditions for determination of small amounts of phenolic substances. The violeto-coupling product is less stable than the redp-coupling products, and intramolecularly hydrogen-bonded six-membered ring is assumed to exist in the structure. In acid medium the dyes are mainly monoprotonated, and partly diprotonated in concentrated sulphuric acid medium. The products are stable up to about pH 11. These properties make extraction into low-polarity solvents possible. The dye derived from 2,6-xylenol andp-cresol has not hitherto been prepared. The principal spectral characteristics, γmax(ɛ), of the products in ethanol medium are: 499 nm (4.7 × 104 1·mole−1 cm−1) for the phenol derivative, 486 nm (5.0 × 104) for the 2,6-xylenol product, and γmax 540 nm for thep-cresol product.
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 1573-4846
    Keywords: thin layer ; optical fiber ; copper ephedrine doping ; effect of gases
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract In this paper the interaction of polysiloxane and TiOTi-doped polysiloxane gel layers containing Cu2+-ephedrine (CuEP) with carbon dioxide, nitrogen and water is investigated. This interaction is studied through changes of the output optical power from an optical fiber coated with the investigated gel layer. The layers are prepared with sols based on tetraethoxysilane and titanium isopropoxide, isopropanol, acetylacetone and Cu2+-ephedrine by the repeated dip-coating method. The applied gel layers are dried at 70°C. Spectral and temporal changes of the output optical power due to effect of the tested gases are measured. The measurements show big changes of the output optical power of fibers coated with CuEP-doped silica gel layers in a wavelength range from 400 to 700 nm, which is in relation with spectral effects of CuEP in alcoholic solutions. Relatively lower changes of the attenuation spectra without any attenuation band are found in the spectra of TiOTi-doped siloxane gel layers containing CuEP. The angular distributions of the output optical power of the coated fibers indicate high optical losses of the layers.
    Type of Medium: Electronic Resource
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