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Spray-flame synthesis of La(Fe,Co)O3 nano-perovskites from metal nitrates
Authors:Steven Angel  Julian Neises  Maik Dreyer  Klaus Friedel Ortega  Malte Behrens  Yuan Wang  Hamidreza Arandiyan  Christof Schulz  Hartmut Wiggers
Affiliation:1. IVG, Institute for Combustion and Gas Dynamics—Reactive Fluids, University of Duisburg-Essen, Germany;2. Faculty of Chemistry, Inorganic Chemistry, University of Duisburg-Essen, Germany;3. Faculty of Chemistry, Inorganic Chemistry, University of Duisburg-Essen, Germany

CENIDE, Center for Nanointegration, University of Duisburg-Essen, Germany;4. School of Chemistry, Faculty of Science, The University of New South Wales, Sydney, New South Wales, Australia;5. Laboratory of Advanced Catalysis for Sustainability, School of Chemistry, The University of Sydney, Sydney, Australia

Abstract:Nano-sized perovskites were synthesized in a spray flame from nitrate precursors dissolved in ethanol and in ethanol/2-ethylhexanoic acid (2-EHA) mixtures. Experiments with ethanol led to a broad particle-size distribution and to the formation of undesired phases such as La2CoO4, La2O3, and Co3O4. The addition of 2-EHA can initiate micro explosions of the burning droplets and has been systematically investigated toward the formation of single-phase, high-surface-area LaCoO3 and LaFeO3 with a narrow size distribution. To investigate the effect of 2-EHA, temperature-dependent changes of the chemical composition of the precursor solutions were analyzed with ATR-FTIR between 23 and 70°C. In all cases, the formation of esters was identified while in the solutions containing iron, additional formation of carboxylates was observed. The synthesized materials were characterized by BET SSA, XRD, SAED and EDX-TEM and their catalytic activity was analyzed, reaching 50% CO conversion at temperatures below 160 and 300°C for LaCoO3 and LaFeO3, respectively.
Keywords:2-ethylhexanoic acid  CO oxidation  LaCoO3  LaFeO3  perovskite  spray-flame synthesis
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