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Showing 1 to 6 of 6 for “"LSCO"”.
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Water splitting for hydrogen and syngas production over a novel bi-layer perovskite membrane
… oxygen potential side) and LaO.8 SrO.2 CoO3 (LSCo) is chosen for the sweep side (low oxygen potential side). These two materials demonstrate different properties on the two surfaces. The bi-layer membrane configuration is thermodynamically favorable for water reduction. Meanwhile, the second …
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An electrochemical study on the ionic conductivity of ceramic electrolyte La1-2SrxCo3-yMyO3-sigma oxide and its Pd/Ag compsites
… conductivity, for instance La0.2Sr0.8CoO3-d (LSCO) exhibits O2- conductivity of 2.56 A' 10-3 S/cm at 900A?C but of only 1.23 A' 10-7S/cm at 400A?C. Moreover, the highest possible dopant content at site A of perovskite cell in terms of not scarifying stability of the resulting crystal structure …
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Exploring exotic superconducting order in La-based cuprate materials using Josephson interferometry
… order parameter of La$_{2−x}$Sr$_x$CuO$_4$ (LSCO) in the heavily overdoped (x$>$0.25) regime. Combining experimental measurements and simulations of I$_c(\Phi)$, we find evidence for granular superconductivity and circulating currents in LSCO near criticality.
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Exotic phases and quantum criticality in gapless correlated electron systems
… agreeing with neutron scattering experiments on LSCO. Secondly, for a Pomeranchuk transition where an electronic nematic order parameter develops we present a controlled expansion within which the physics of such a transition, and of the related problem of fermions coupled to a gauge field, can …
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Estudio y optimización de la respuesta electroquímica de materiales para cátodos de celdas combustibles
… La0.4Sr0.6CoO3-δ y de La0.4Sr0.6FeO3-δ (LSCO), utilizando para su síntesis el Método Químico de Pechini. Se pudo demostrar que la sustitución con Co en esta estructura presenta un mejor desempeño como material catódico
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Manipulating superconductivity in cuprates with selective ultrafast excitation
"Ultrafast techniques allow an unprecedented look at the electronic and bosonic interactions that govern the macroscopic properties of materials. These processes can now be accessed on their fundamental timescale---the attosecond to picosecond range. Most ultrafast measurements involve using high …