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Intrinsic and impurity defects in chromium‐doped SrTiO 3 nanopowders: EPR and NMR study
Author(s) -
Bykov Igor,
Makarova Marina,
Trepakov Vladimir,
Dejneka Alexandr,
Yurchenko Lesya,
Yurchenko Lesya,
Jäger Aleš,
Jastrabik Lubomir
Publication year - 2013
Publication title -
physica status solidi (b)
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.51
H-Index - 109
eISSN - 1521-3951
pISSN - 0370-1972
DOI - 10.1002/pssb.201200871
Subject(s) - materials science , electron paramagnetic resonance , paramagnetism , anatase , nanoparticle , particle size , rutile , impurity , analytical chemistry (journal) , solvothermal synthesis , crystallization , crystallography , nuclear magnetic resonance , chemical engineering , chemistry , nanotechnology , catalysis , condensed matter physics , biochemistry , chromatography , engineering , physics , organic chemistry , photocatalysis
Electron Paramagnetic Resonance (EPR) and Nuclear Magnetic Resonance (NMR) spectra were studied in solvothermal‐ and citrate sol–gel‐grown (CSGG) SrTiO 3 :Cr(0.1%) crystalline nanopowders. Various growth conditions and thermal treatments were used to determine defects and to tailor nanoparticles structure and crystallization processes. Solvothermal‐grown nanopowders with 5 nm particle size revealed the dominant presence of the single perovskite‐type phase. Annealing of the CSGG nanoparticles in air up to 800 °C leads to an increase of the particles size and the amount of the titanium dioxide (rutile and/or anatase) phase, which is initially present in small amounts in CSGG powders. It was found that paramagnetic Cr 3+ , Cr 5+ , ${\rm Cr}_{{\rm surf}}^{{\rm 3 + }} $ , O − , O 2− ions are present in solvothermal‐grown nanopowders and in all CSGG powders. In the annealed particles the majority of paramagnetic centers (PC) are located in the particle surface and in the TiO 2 phase. The nature of the PC in nanopowders exhibiting different degrees of catalytic activity in nanopowders was studied too. A correlation between O − and O 2− content, synthesis conditions and particle size was found. The NMR spectra of 47 Ti ( I = 5/2) and 49 Ti ( I = 7/2) reveal a pronounced dependence of the spectral line intensity on synthesis conditions, evidencing coexistence of Ti 3+ and Ti 4+ ions in SrTiO 3 :Cr nanoparticles.