strontium has been researched along with perovskite in 30 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 7 (23.33) | 29.6817 |
2010's | 22 (73.33) | 24.3611 |
2020's | 1 (3.33) | 2.80 |
Authors | Studies |
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Chen, CL; Wang, CH; Weng, HS | 1 |
Barnes, PW; Howard, CJ; Kennedy, BJ; Woodward, PM | 1 |
Haeng Yu, J; Lee, JS; Maier, J | 1 |
Kingon, A | 1 |
Moos, R; Sahner, K | 1 |
Goodenough, JB; Ito, E; Jin, CQ; Katsura, T; Liu, QQ; Shatskiy, A; Yang, LX; Yu, RC; Yu, Y; Zhao, JG; Zhou, JS | 1 |
Bae, SW; Borse, PH; Hwang, DW; Jang, JS; Ji, SM; Kim, HG; Lee, JS | 1 |
Arshad Farhan, M; Javed Akhtar, M | 1 |
Liu, W; Liu, X; Liu, Z; Mao, J; Su, Y; Sui, Y; Wang, X; Wang, Y; Zhang, X; Zhu, R | 1 |
Fan, HJ; Wang, Y | 1 |
Allen, MA; Belcher, AM; Dang, X; Lei, Y; Nuraje, N; Qi, J | 1 |
Chisholm, MF; Choi, WS; Eastman, JA; Eres, G; Fister, TT; Fong, DD; Fuoss, PH; Lee, HN; Luo, Z; Rouleau, CM; Seo, SS; Tischler, JZ; Zhou, H | 1 |
Belous, A; Bubnovskaya, L; Kondratenko, I; Kovelskaya, A; Osinsky, S; Podoltsev, A; Sergienko, T; Solopan, A | 1 |
Chen, ZG; Jiang, S; Shao, Z; Zhou, W; Zhu, Y; Zou, J | 1 |
Lin, C; Lin, Z; Wang, M; Ye, M; Zhang, N; Zheng, D | 1 |
Aschauer, U; Spaldin, NA | 1 |
Choi, S; Jeong, HY; Jun, A; Kim, G; Kim, J; Shin, J | 1 |
Aimon, NM; Choi, HK; Goto, T; Kim, DH; Onbasli, M; Ross, CA; Sun, XY; Zhang, C | 1 |
Bagchi, A; Chatterjee, K; Meka, SR; Rao, BN | 1 |
Chen, X; Feng, YQ; Li, XS; Sun, H; Yuan, BF | 1 |
Dral, AP; Dubbink, D; Koster, G; Nijland, M; Rijnders, G; ten Elshof, JE | 1 |
Blume, R; Fleig, J; Hävecker, M; Klötzer, B; Knop-Gericke, A; Nenning, A; Opitz, AK; Rameshan, C; Rameshan, R; Rupprechter, G | 1 |
Amador, U; Boulahya, K; Chinelatto, AL; Hoelzel, M; Mather, GC; Nicholls, S; Pérez-Coll, D; Sinclair, DC; Tabacaru, C | 1 |
Janotti, A; Umezawa, N | 1 |
Han, YM; Jung, CH; Kim, YK; Lee, SJ | 1 |
Edmondson, BI; Ekerdt, JG; Hu, S; Lin, EL | 1 |
Ciríaco, L; Lopes, A; Nunes, MJ; Pacheco, MJ | 1 |
Becattini, V; Ezbiri, M; Hoes, M; Michalsky, R; Steinfeld, A | 1 |
Delgado-Niño, P; López-Vásquez, A; Salas-Siado, D | 1 |
Flores Urquizo, IA; Hernandez Garcia, TC; Montes de Oca Ayala, FT; Rivera de la Rosa, J; Sanchez Correa, H | 1 |
30 other study(ies) available for strontium and perovskite
Article | Year |
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Surface properties and catalytic performance of La(1-x)Sr(x)FeO(3) perovskite-type oxides for methane combustion.
Topics: Calcium Compounds; Catalysis; Ferric Compounds; Lanthanum; Methane; Oxides; Strontium; Surface Properties; Titanium; X-Ray Diffraction | 2004 |
Structures of the ordered double perovskites Sr2YTaO6 and Sr2YNbO6.
Topics: Calcium Compounds; Crystallography, X-Ray; Models, Molecular; Molecular Structure; Niobium; Oxides; Oxygen Compounds; Strontium; Tantalum; Titanium; Yttrium | 2005 |
Formation of protonic defects in perovskite-type oxides with redox-active acceptors: case study on Fe-doped SrTiO(3).
Topics: Calcium Compounds; Chemical Phenomena; Chemistry, Physical; Iron; Oxidation-Reduction; Oxides; Protons; Solubility; Strontium; Surface Properties; Temperature; Thermogravimetry; Time Factors; Titanium; Volatilization; Water | 2005 |
Perovskites: is the ultimate memory in sight?
Topics: Calcium Compounds; Materials Testing; Microscopy, Atomic Force; Nanotechnology; Oxides; Silicon; Strontium; Titanium | 2006 |
Modeling of hydrocarbon sensors based on p-type semiconducting perovskites.
Topics: Calcium Compounds; Carbonates; Electric Conductivity; Electrodes; Ferric Compounds; Hydrocarbons; Models, Chemical; Oxides; Particle Size; Semiconductors; Sensitivity and Specificity; Strontium; Surface Properties; Temperature; Titanium | 2007 |
High-pressure synthesis of the cubic perovskite BaRuO3 and evolution of ferromagnetism in ARuO3 (A = Ca, Sr, Ba) ruthenates.
Topics: Barium; Calcium; Calcium Compounds; Chemistry, Physical; Crystallography, X-Ray; Geology; Iron; Magnetics; Models, Chemical; Oxides; Pressure; Ruthenium; Strontium; Temperature; Titanium | 2008 |
Photocatalytic hydrogen production from water-methanol mixtures using N-doped Sr2Nb2O7 under visible light irradiation: effects of catalyst structure.
Topics: Calcium Compounds; Catalysis; Chemistry, Physical; Electric Conductivity; Hydrogen; Light; Methanol; Nitrogen; Oxides; Oxygen; Photochemistry; Strontium; Titanium; Water | 2005 |
Negative pressure driven phase transformation in Sr doped SmCoO₃.
Topics: Calcium Compounds; Computer Simulation; Models, Chemical; Models, Molecular; Oxides; Phase Transition; Pressure; Strontium; Titanium; Transition Elements | 2010 |
Evidence of two distinct dynamical freezing processes in single-layered perovskite La(0.7)Sr(1.3)CoO4.
Topics: Calcium Compounds; Cobalt; Freezing; Lanthanum; Magnetics; Models, Molecular; Oxides; Strontium; Titanium | 2011 |
Low-field magnetoresistance effect in core-shell structured La(0.7) Sr(0.3) CoO(3) nanoparticles.
Topics: Calcium Compounds; Cobalt; Magnetics; Metal Nanoparticles; Microscopy, Electron, Scanning; Nanotechnology; Oxides; Strontium; Titanium | 2012 |
Biotemplated synthesis of perovskite nanomaterials for solar energy conversion.
Topics: Bacteriophage M13; Calcium Compounds; Capsid Proteins; Catalysis; Coloring Agents; Crystallization; Light; Nanostructures; Oxides; Solar Energy; Strontium; Titanium | 2012 |
Atomic layer engineering of perovskite oxides for chemically sharp heterointerfaces.
Topics: Aluminum Compounds; Calcium Compounds; Kinetics; Lanthanum; Oxides; Oxygen; Partial Pressure; Strontium; Titanium | 2012 |
Nanohyperthermia of malignant tumors. II. In vivo tumor heating with manganese perovskite nanoparticles.
Topics: Animals; Antineoplastic Agents; Calcium Compounds; Female; Hyperthermia, Induced; Lanthanum; Magnetic Field Therapy; Manganese; Manganese Compounds; Nanoparticles; Neoplasms, Experimental; Oxides; Rats; Strontium; Titanium | 2012 |
An A-site-deficient perovskite offers high activity and stability for low-temperature solid-oxide fuel cells.
Topics: Calcium Compounds; Cobalt; Electric Power Supplies; Electrodes; Microscopy, Electron, Transmission; Niobium; Oxides; Strontium; Temperature; Titanium; X-Ray Diffraction | 2013 |
Garden-like perovskite superstructures with enhanced photocatalytic activity.
Topics: Adsorption; Benzenesulfonates; Calcium Compounds; Catalysis; Diffusion; Nanoparticles; Oxides; Photolysis; Strontium; Tin Compounds; Titanium; Ultraviolet Rays; Zinc Oxide | 2014 |
Competition and cooperation between antiferrodistortive and ferroelectric instabilities in the model perovskite SrTiO3.
Topics: Calcium Compounds; Computer Simulation; Electromagnetic Fields; Models, Chemical; Models, Molecular; Oxides; Scattering, Radiation; Strontium; Titanium | 2014 |
Chemically stable perovskites as cathode materials for solid oxide fuel cells: La-doped Ba0.5Sr0.5Co0.8Fe0.2O(3-δ).
Topics: Barium; Calcium Compounds; Cobalt; Electric Conductivity; Electric Power Supplies; Electrodes; Iron; Lanthanum; Oxides; Strontium; Titanium | 2014 |
Combinatorial pulsed laser deposition of magnetic and magneto-optical Sr(GaxTiyFe0.34-0.40)O3-δ perovskite films.
Topics: Anisotropy; Calcium Compounds; Crystallization; Elasticity; Lasers; Magnetic Phenomena; Magnets; Oxides; Strontium; Titanium | 2014 |
Perovskite ceramic nanoparticles in polymer composites for augmenting bone tissue regeneration.
Topics: Animals; Biocompatible Materials; Bone and Bones; Bone Regeneration; Calcium Compounds; Cell Line; Cell Proliferation; Ceramics; Materials Testing; Mice; Nanocomposites; Nanoparticles; Osteoblasts; Oxides; Polyesters; Polymers; Strontium; Tissue Engineering; Tissue Scaffolds; Titanium | 2014 |
Perovskite for the highly selective enrichment of phosphopeptides.
Topics: Calcium Compounds; Humans; Jurkat Cells; Mass Spectrometry; Oxides; Phosphopeptides; Strontium; Titanium; Zirconium | 2015 |
Atomically defined templates for epitaxial growth of complex oxide thin films.
Topics: Calcium Compounds; Crystallization; Dysprosium; Nanostructures; Niobium; Oxides; Scandium; Strontium; Titanium | 2014 |
Enhancing electrochemical water-splitting kinetics by polarization-driven formation of near-surface iron(0): an in situ XPS study on perovskite-type electrodes.
Topics: Calcium Compounds; Electrochemical Techniques; Electrodes; Iron; Kinetics; Lanthanum; Oxides; Photoelectron Spectroscopy; Strontium; Surface Properties; Titanium; Water | 2015 |
Synthesis of a 12R-type hexagonal perovskite solid solution Sr3NdNb(3-x)Ti(x)O(12-δ) and the influence of acceptor doping on electrical properties.
Topics: Calcium Compounds; Crystallography, X-Ray; Dielectric Spectroscopy; Electric Conductivity; Microscopy, Electron, Transmission; Molecular Conformation; Neodymium; Niobium; Oxides; Strontium; Temperature; Titanium | 2015 |
Controlling the Electronic Structures of Perovskite Oxynitrides and their Solid Solutions for Photocatalysis.
Topics: Calcium Compounds; Catalysis; Lanthanum; Light; Oxides; Photochemical Processes; Solutions; Strontium; Titanium | 2016 |
Effects of Fuel to Synthesis of CaTiO3 by Solution Combustion Synthesis for High-Level Nuclear Waste Ceramics.
Topics: Calcium Compounds; Ceramics; Oxides; Radioactive Waste; Strontium; Titanium | 2016 |
Epitaxial Growth of Perovskite Strontium Titanate on Germanium via Atomic Layer Deposition.
Topics: Calcium Compounds; Crystallization; Germanium; Oxides; Photoelectron Spectroscopy; Semiconductors; Silicon; Strontium; Titanium | 2016 |
Preparation, characterization and environmental applications of Sr
Topics: Azo Compounds; Benzenesulfonates; Calcium Compounds; Catalysis; Oxides; Photolysis; Strontium; Titanium | 2017 |
High Redox Capacity of Al-Doped La
Topics: Aluminum; Calcium Compounds; Carbon Dioxide; Carbonates; Lanthanum; Manganese; Oxidation-Reduction; Oxides; Oxygen; Strontium; Surface Properties; Titanium; Water | 2017 |
Photocatalytic hydrogen production by strontium titanate-based perovskite doped europium (Sr
Topics: Calcium Compounds; Catalysis; Edetic Acid; Europium; Hydrogen; Light; Oxides; Semiconductors; Strontium; Titanium; Ultraviolet Rays; Zirconium | 2019 |
Synthesis of La-Sr-Mn-O and La-Sr-Ca-Mn-O Perovskites Through Solution Combustion Using Urea at Fuel Deficient Conditions.
Topics: Calcium Compounds; Chemistry Techniques, Synthetic; Hot Temperature; Lanthanum; Magnetite Nanoparticles; Manganese; Oxides; Strontium; Titanium; Urea | 2020 |