Matches in SemOpenAlex for { <https://semopenalex.org/work/W1997438011> ?p ?o ?g. }
- W1997438011 endingPage "178" @default.
- W1997438011 startingPage "171" @default.
- W1997438011 abstract "This work was concerned with the synthesis of NiTiO3 powders by the sol–gel and the solid state reaction methods, and the investigation of their structural, electronic and optical properties required for their application in photocatalysis. The main goal was to determine which of these two synthesis methods was better for obtaining a pure NiTiO3 crystalline phase. Synthesized powders were characterized by EDS, XRD, Raman and UV–vis diffuse reflectance spectroscopies. An analysis of the results shows that the sol–gel route with an annealing step at 1350 °C for 2 h in air atmosphere leads to a highly pure nickel titanate powder without any further purification step. A band gap of 2.2 eV was determined for this sample from diffuse reflectance spectroscopy. The solid state reaction route also allows the preparation of NiTiO3 powders, but with a reduced purity (95%) as some TiO2 and NiO phases are found in the powders, after the same thermal treatment as for the sol–gel samples. The EDS and XRD results were consistent between themselves for all samples, showing that the powders obtained by the sol–gel route and annealed at 1350 °C, during 2 h, are pure polycrystalline NiTiO3 with the Ilmenite structure (hexagonal symmetry with lattice parameters around a=b=0.5 nm and c=1.38 nm). In addition, the observed 10 active Raman modes confirmed the presence of the Ilmenite phase of NiTiO3. Finally, the absorption spectra as determined from UV–vis diffuse reflectance shows the presence of at least 3 absorption bands that could be explained by the main (HOMO–LUMO) transitions plus two other bands related to charge transfer from O2− to Ti4+ and Ni2+ to Ti4+. It can be expected that these photo-activated charge transfer phenomena will provide a high photo-catalytic activity to this material. All of the above results show that the sol–gel route allows the preparation of pure nano-crystalline NiTiO3 powders." @default.
- W1997438011 created "2016-06-24" @default.
- W1997438011 creator A5007936663 @default.
- W1997438011 creator A5026993740 @default.
- W1997438011 creator A5044609157 @default.
- W1997438011 creator A5081137183 @default.
- W1997438011 date "2015-09-01" @default.
- W1997438011 modified "2023-10-18" @default.
- W1997438011 title "Comparison of nickel titanate (NiTiO3) powders synthesized by sol–gel and solid state reaction" @default.
- W1997438011 cites W1553551987 @default.
- W1997438011 cites W1965064943 @default.
- W1997438011 cites W1972131495 @default.
- W1997438011 cites W1983402766 @default.
- W1997438011 cites W1984517306 @default.
- W1997438011 cites W1996357498 @default.
- W1997438011 cites W2011080985 @default.
- W1997438011 cites W2014723849 @default.
- W1997438011 cites W2017157000 @default.
- W1997438011 cites W2028498316 @default.
- W1997438011 cites W2029509431 @default.
- W1997438011 cites W2029988217 @default.
- W1997438011 cites W2032616711 @default.
- W1997438011 cites W2034461400 @default.
- W1997438011 cites W2034513746 @default.
- W1997438011 cites W2040875144 @default.
- W1997438011 cites W2051101131 @default.
- W1997438011 cites W2055084528 @default.
- W1997438011 cites W2060103943 @default.
- W1997438011 cites W2070042833 @default.
- W1997438011 cites W2077192468 @default.
- W1997438011 cites W2084977047 @default.
- W1997438011 cites W2090011124 @default.
- W1997438011 cites W2093487971 @default.
- W1997438011 cites W2093792795 @default.
- W1997438011 cites W2097634899 @default.
- W1997438011 cites W2116322819 @default.
- W1997438011 cites W2950177932 @default.
- W1997438011 cites W43645565 @default.
- W1997438011 doi "https://doi.org/10.1016/j.mssp.2015.02.063" @default.
- W1997438011 hasPublicationYear "2015" @default.
- W1997438011 type Work @default.
- W1997438011 sameAs 1997438011 @default.
- W1997438011 citedByCount "48" @default.
- W1997438011 countsByYear W19974380112016 @default.
- W1997438011 countsByYear W19974380112017 @default.
- W1997438011 countsByYear W19974380112018 @default.
- W1997438011 countsByYear W19974380112019 @default.
- W1997438011 countsByYear W19974380112020 @default.
- W1997438011 countsByYear W19974380112021 @default.
- W1997438011 countsByYear W19974380112022 @default.
- W1997438011 countsByYear W19974380112023 @default.
- W1997438011 crossrefType "journal-article" @default.
- W1997438011 hasAuthorship W1997438011A5007936663 @default.
- W1997438011 hasAuthorship W1997438011A5026993740 @default.
- W1997438011 hasAuthorship W1997438011A5044609157 @default.
- W1997438011 hasAuthorship W1997438011A5081137183 @default.
- W1997438011 hasConcept C113196181 @default.
- W1997438011 hasConcept C120665830 @default.
- W1997438011 hasConcept C121332964 @default.
- W1997438011 hasConcept C134132462 @default.
- W1997438011 hasConcept C137637335 @default.
- W1997438011 hasConcept C138999460 @default.
- W1997438011 hasConcept C156328458 @default.
- W1997438011 hasConcept C161790260 @default.
- W1997438011 hasConcept C171250308 @default.
- W1997438011 hasConcept C185592680 @default.
- W1997438011 hasConcept C191897082 @default.
- W1997438011 hasConcept C192562407 @default.
- W1997438011 hasConcept C199289684 @default.
- W1997438011 hasConcept C202954235 @default.
- W1997438011 hasConcept C2777855556 @default.
- W1997438011 hasConcept C2780375929 @default.
- W1997438011 hasConcept C2780856220 @default.
- W1997438011 hasConcept C38398224 @default.
- W1997438011 hasConcept C40003534 @default.
- W1997438011 hasConcept C43617362 @default.
- W1997438011 hasConcept C504270822 @default.
- W1997438011 hasConcept C55493867 @default.
- W1997438011 hasConcept C65165184 @default.
- W1997438011 hasConcept C74575197 @default.
- W1997438011 hasConcept C82261727 @default.
- W1997438011 hasConceptScore W1997438011C113196181 @default.
- W1997438011 hasConceptScore W1997438011C120665830 @default.
- W1997438011 hasConceptScore W1997438011C121332964 @default.
- W1997438011 hasConceptScore W1997438011C134132462 @default.
- W1997438011 hasConceptScore W1997438011C137637335 @default.
- W1997438011 hasConceptScore W1997438011C138999460 @default.
- W1997438011 hasConceptScore W1997438011C156328458 @default.
- W1997438011 hasConceptScore W1997438011C161790260 @default.
- W1997438011 hasConceptScore W1997438011C171250308 @default.
- W1997438011 hasConceptScore W1997438011C185592680 @default.
- W1997438011 hasConceptScore W1997438011C191897082 @default.
- W1997438011 hasConceptScore W1997438011C192562407 @default.
- W1997438011 hasConceptScore W1997438011C199289684 @default.
- W1997438011 hasConceptScore W1997438011C202954235 @default.
- W1997438011 hasConceptScore W1997438011C2777855556 @default.
- W1997438011 hasConceptScore W1997438011C2780375929 @default.
- W1997438011 hasConceptScore W1997438011C2780856220 @default.