Affiliation:
1. Odessa I.I. Mechnikov national university
Abstract
The results of redox interaction of Ce (IV) with 4-sulfo-2-(4’-sulfonaphthalene-1’-azo) naphthol-1 (carmosine- KAN) in aqueous solutions (pH 1.75) have been presented. The destructive oxidation of CAS into two fragments (2-nitroso-4-sulfonaphthol-1 (L1) and 1-nitroso-4-sulfonaphthalene (L2)) is accampanied by reduction of Ce(IV) to Ce(III). It was found that an increase in the Ce(III) -L1 -L2 system acidity to pH ~ 11 leads to formation of the [Ce(III)(ОН)2·L1·2Н2О] complex. After acetonitrile is introduced to [Ce(III)(ОН)2·L1 ·2Н2О] – L2 system (up to 40 % by volume) self-organization of products involving CH3CN is observed. The resulting water-acetonitrile system becomes turbid, and after ~10 min phase separation is observed. Phase I contains a solvate {L2·(CH3CN)п } of «straw» color (360 nm) and phase II (lower layer) contains solvated complex {[Ce (III) (ОН) 2 ·L 1 ·(CH 3 CN) 2 ]·(CH 3 CN)n} of «blue» color (640 nm). The use of these solvates allows determination of Ce(IV) in the range 2.2 ч 50.1 μg/cm3 (y = 0.5526с + 0.0575, R2 = 0.9917, ε360 = 6.2·103) and 4.2 ч 84.0 μg/cm3 (y = 0.1862c + 0.0265, R2 = 0.9952, ε640 = 2.05·103), respectively. The revealed dependence was used for indirect (volumetric) determination of Ce(IV) (y = -0.7857c + 20.4440, R2=0.9988). The methods was tested on standard samples of mineral origin and herbal pharmaceutical preparations.
Publisher
Taras Shevchenko National University of Kyiv
Reference39 articles.
1. Skal’nyjA.V.; et al. Himicheskie jelementy v fiziologii i jekologii cheloveka. M.: Oniks 21 vek, 2004, 216 P.
2. Lin Y.; Yang Z.; Cheng J.; et al. Preparation, characterization and antibacterial property of cerium substituted hydroxyapatite nanoparticles. J. Rare Earths. 2007, 25 (4), 452-456.
3. Kuen-Song Lin; Sujan Chowdhury; et al. Synthesis, characterization, and application of 1-D cerium oxide nanomaterials: a review. J. Mol. Sci. 2010, 11, 3226-3251.
4. Hirst S.M.; Karakoti A.; Singh S.; et al. Bio-distribution and in vivo antioxidant effects of cerium oxide nanoparticles in mice. Environ. Toxic. 2013, 28, 107-118.
5. Shherbakov A.B.; Zholobak N. M.; Ivanov V. K.; Tret’jakov Ju. D.; Spivak N.Ja.; Ogljad. Nanomaterialy na osnove dioksida cerija: svojstva i perspektivy ispol’zovanija v biologii i medicine. Biotehnologija. 2011, 4 (1), 9–28.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献