Research output: Contribution to journal › Article › peer-review
Formation of vanadium-containing nanostructures on the surface of protonated forms of layered perovskite-like titanates K2La2Ti3O10 and NaLaTiO4. / Silyukov, Oleg I.; Kulish, Liliia D.; Trofimova, Dariya V.; Burovikhina, Alena A.; Chislov, Mikhail V.; Rodionov, Ivan A.; Zhukov, Yuri M.; Zvereva, Irina A.
In: Journal of Solid State Chemistry, Vol. 259, 01.03.2018, p. 28-34.Research output: Contribution to journal › Article › peer-review
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TY - JOUR
T1 - Formation of vanadium-containing nanostructures on the surface of protonated forms of layered perovskite-like titanates K2La2Ti3O10 and NaLaTiO4
AU - Silyukov, Oleg I.
AU - Kulish, Liliia D.
AU - Trofimova, Dariya V.
AU - Burovikhina, Alena A.
AU - Chislov, Mikhail V.
AU - Rodionov, Ivan A.
AU - Zhukov, Yuri M.
AU - Zvereva, Irina A.
PY - 2018/3/1
Y1 - 2018/3/1
N2 - Reactions of layered perovskite-like oxides K2La2Ti3O10, NaLaTiO4 and corresponding protonated oxides H2La2Ti3O10, HLaTiO4 with vanadyl sulfate aqueous solution have been studied. It was revealed that the exchange reaction of interlayer alkali cations in K2La2Ti3O10 and NaLaTiO4 by with vanadyl cations, which was reported in the literature previously, does not proceed. The formation of the corresponding protonated forms and vanadium-containing particles is found to occur instead. In the case of protonated forms H2La2Ti3O10, HLaTiO4 vanadium-containing nanostructures are formed on the surface.
AB - Reactions of layered perovskite-like oxides K2La2Ti3O10, NaLaTiO4 and corresponding protonated oxides H2La2Ti3O10, HLaTiO4 with vanadyl sulfate aqueous solution have been studied. It was revealed that the exchange reaction of interlayer alkali cations in K2La2Ti3O10 and NaLaTiO4 by with vanadyl cations, which was reported in the literature previously, does not proceed. The formation of the corresponding protonated forms and vanadium-containing particles is found to occur instead. In the case of protonated forms H2La2Ti3O10, HLaTiO4 vanadium-containing nanostructures are formed on the surface.
KW - Layered oxides
KW - Nanostructure
KW - Perovskite-like oxides
KW - Vanadium
UR - http://www.scopus.com/inward/record.url?scp=85039991211&partnerID=8YFLogxK
U2 - 10.1016/j.jssc.2017.12.032
DO - 10.1016/j.jssc.2017.12.032
M3 - Article
AN - SCOPUS:85039991211
VL - 259
SP - 28
EP - 34
JO - Journal of Solid State Chemistry
JF - Journal of Solid State Chemistry
SN - 0022-4596
ER -
ID: 37015563