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Complex layered perovskite-like oxides ALnTiO4, A2Ln2Ti3O10, ALnNb2O7, ALnTa2O7 (A - Li, Na, K, Rb, Cs, H; Ln - La, Nd) are crystalline compounds where layers of the perovskite structure are alternating with layers having different type of structure. Recently, the said phases have attracted significant attention due to their photo-catalytic properties [1, 2]. They can also be used as precursors to obtain other perovskite-like compounds by means of ion exchange or certain topochemical transformations. It was found that alkaline forms of such perovskites in the aqueous medium can perform replacement of cations by protons and hydration (rooting of water molecules in the interlayer space). These effects lead to substantial changes in physical and chemical properties of photo-catalysts. The composition of layered perovskite oxides may include several different metals [1-5], and depending on their nature and stoichiometry, these objects can display a wide range of physical and chemical properties. Normally, perovskite-like oxides are semiconducting materials.
Wydawca
Rocznik
Tom
Strony
158--164
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
autor
- Poltava National Technical Yuri Kondratyuk University, Ukraine
autor
- Poltava National Technical Yuri Kondratyuk University, Ukraine
autor
- Poltava National Technical Yuri Kondratyuk University, Ukraine
Bibliografia
- [1] Zvereva I.А., Mekhanizm obrazovaniya perovskitopodobnogo sloistogo oksida Na2Nd2Ti3O10 [Mechanism of perovskite-like layered Na2Nd2Ti3O10 oxide formation] / I.А. Zvereva, А.М. Sankovich, А.B. Missyul et al. Fizika i khimiya stekla [Physics and Chemistry of Glass], 2010, V. 36, No. 2, pp. 261-269.
- [2] Rodionov I.А., Issledovaniye fotokataliticheskoy aktivnosti sloistykh oksidov ALnTiO4 (A - Na, Li, H) [Studying photo-catalytic activity of ALnTiO4 (A - Na, Li, H) layered oxides] / I.А. Rodionov, О.I. Silyukov, I.А. Zvereva. Zhurnal obshchey khimiyi [General Chemistry Journal], 2012, No. 4, pp. 548-555.
- [3] Titov Yu.О., Umovy izovalentnoho zamishchennya atomiv RZE v p’yatysharoviy strukturi CaLn4Ti5O17 [Conditions for isovalent substitution of REE atoms in the five-layered CaLn4Ti5O17 structure] / Yu.О. Titov, М.S. Slobodyanyk, V.V. Chumak. Ukr. khim. zhurn. [Ukr. Chem. J.], 2006, V. 72, No. 7, pp. 3-6.
- [4] Titov Yu.О., Osoblyvosti mekhanizmiv utvorennya sharuvatykh skandativ SrLnnScnO3n+1 iz system sumisno zakrystalizovanykh nitrativ [Mechanisms features of SrLnnScnO3n+1 layered scandates formation in systems of compatibly crystallized nitrates] / Yu.О. Titov, М.S. Slobodyanyk, Ya.A. Krayevska et al. Ukr. khim. zhurn. [Ukr. Chem. J.], 2010, V. 76, No. 5., pp. 11-16.
- [5] Osoblyvosti peretvoren u RZE-vmisnykh systemakh nitratnykh prekursoriv u pidhotovchikh protsesakh formuvannya perovskitopodibnykh oksydnykh materialiv [Features of nitrate precursors transformations in REE-containing systems in the preparatory processes of perovskite-like oxide materials formation] / О.G. Dryuchko, D.О. Storozhenko, N.V. Bunyakina et al. Bulletin of NTU «ХПІ», 2016, No. 22 (1194), pp. 63-71.
- [6] Anosov V.Ya., Osnovy fiziko-matematicheskogo analiza [Basics of Physical and Chemical Analysis] / V.Ya. Anosov, М.I. Ozerova, Yu.Ya. Fialkov. - М.: Nauka, 1976, 503 p.
- [7] Goroshchenko Ya.G., Fiziko-khimicheskiy analiz gomogennykh i geterogennykh system [Physical and Chemical Analysis of homogenous and heterogenous systems] / Ya. G. Goroshchenko. - K.:Naukova dumka, 1978, 490 p.
- [8] Phase Formation in REE-Containing Water-Salt Systems at the Preparatory Stages of the Multicomponent Oxide Functional Materials Formation / D.O. Storozhenko, O.G. Dryuchko, N.V. Bunyakina, I.O. Ivanytska. Innovations in Corrosion and Materials Science, 2015, Vol. 5, No. 2, pp. 80-84.
- [9] Dryuchko О.G., Khimichna vzayemodiya i fazoutvorennya u nitratnykh vodno-soliovykh systemakh ridkozemelnykh elementiv i litiyu [Chemical interaction and phase formation in nitrate water-salt systems of rare earth elements and lithium] / О.G. Dryuchko, D.О. Storozhenko, N.V. Bunyakina et al. Bulletin of NTU «ХПІ», 2015, No. 52 (1094), pp. 29-35.
- [10] Storozhenko D.О., Khimichna vzayemodiya i fazoutvorennya u sulfatakh, nitratnykh, khlorydnykh, vodno-soliovykh systemakh neodymu i luzhnykh metaliv [Chemical interaction and phase formation in sulfates, nitrate, chloride, water-salt systems of neodymium and alkaline metals] / D.О. Storozhenko, О.G. Dryuchko, N.V. Bunyakina et al. Bulletin of NTU «ХПІ», 2013, No. 57 (1030), pp. 121-126.
- [11] Vigdorchik А.G. Polucheniye i rentgenostrukturnoye issledovaniye Rb5[Nd2(NO3)11]∙H2O [Obtaining and X-ray structure analysis of Rb5[Nd2(NO3)11]∙H2O] / А.G. Vigdorchik, Yu.А.Malinovskiy, А.G. Dryuchko et al. // Kristallografiya [Crystallography]. - 1988. - V. 33. - Iss. 3. - P. 613-617.
- [12] Vigdorchik А.G., Nizkotemperaturnoye rentgenostrukturnoye issledovaniye kaliy-neodimovykh nitratov K3[Nd2(NO3) 9] i K2[Nd(NO3)5(H2O)2] [Low-temperature X-ray structure analysis of potassium-neodymium nitrates K3[Nd2(NO3)9] and K2[Nd(NO3)5(H2O)2] / А.G. Vigdorchik, Yu.А.Malinovskiy, А.G. Dryuchko et al. Kristallografiya [Crystallography], 1992, V. 37, Iss. 4, pp. 882-888.
- [13] Anderson M.R., A neutron diffraction study of lanthanum magnesium nitrate / M.R. Anderson, G.T. Jenkin, J.W. White. Acta crystallogr., 1977, B. 33, No 12, pp. 3933-3936.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
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