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  1. 5661
    “…The influence of the UV-irradiation during pulsed laser deposition on the formation of oxygen-vacancies is investigated for the perovskite model material SrTiO(3). The carrier concentration of UV-irradiated samples is nearly constant with depth and time. …”
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  2. 5662
    “…Here, a combination of transmission electron microscopy (TEM) techniques is utilized to determine in detail the microstructure of epitaxial La-doped BaSnO(3) films grown on two different perovskite substrates: LaAlO(3) and PrScO(3). These BaSnO(3) films are of high current interest due to outstanding electron mobility at ambient. …”
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  3. 5663
    “…In addition, the structural compatibility between Bi(2)O(2)Se and interesting perovskite oxides (for example, cuprate high–transition temperature superconductors and commonly used substrate material SrTiO(3)) further makes heterostructures between Bi(2)O(2)Se and these oxides possible platforms for realizing novel physical phenomena, such as topological superconductivity, Josephson junction field-effect transistor, new superconducting optoelectronics, and novel lasers.…”
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  4. 5664
    “…Recent studies showed that under operating conditions many perovskite-type oxide electrodes are prone to changes of their surface composition, leading to severe changes of their electrochemical performance. …”
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  5. 5665
    “…Incorporating functional ferroelectrics into photovoltaic cells would be a good strategy in improving photovoltaic performance and is applicable to other types of photovoltaic devices, such as perovskite solar cells.…”
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  6. 5666
    “…Both molybdenum oxide-triazole compounds displayed superior catalytic performance in comparison with the known hybrid materials [MoO(3)(trz)(0.5)], which have different structures based on organic-inorganic perovskite-like layers. With aqueous H(2)O(2) as the oxidant instead of TBHP, all compounds were completely soluble and active. …”
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  7. 5667
    “…We have interpreted the results in terms of the topotactic phase transformation between their insulating brownmillerite phase and the conducting perovskite phase and the existence of a rather vertical conducting filament due to its inherent layered structure. …”
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  8. 5668
    “…Here, we demonstrate that the rare-earth perovskite YbAlO(3) provides a realization of a quantum spin S = 1/2 chain material exhibiting both quantum critical Tomonaga–Luttinger liquid behavior and spinon confinement–deconfinement transitions in different regions of magnetic field–temperature phase diagram.…”
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  9. 5669
    “…Herein, we introduce a heterostructure comprising perovskite oxides (La(0.5)Sr(0.5)CoO(3–δ)) and molybdenum diselenide (MoSe(2)) as an electrochemical catalyst for overall water electrolysis. …”
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  10. 5670
    “…We find that the amorphous transition in monoclinic layered perovskite La(2)Ti(2)O(7) occurs for a lower degree of electronic excitation than for cubic pyrochlore La(2)Zr(2)O(7). …”
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  11. 5671
  12. 5672
  13. 5673
    “…We believe that alkali carbonates–modified SnO(2) approaches are an effective way to achieve stable and highly efficient iOSCs and might also be suitable for other optoelectronic devices where an ETL is needed, such as perovskite solar cells or organic light-emitting diodes.…”
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  14. 5674
    “…Here we demonstrate that one type of perovskite manganites, i.e., a (La(2/3)Pr(1/3))(5/8)Ca(3/8)MnO(3) thin film with pronounced electronic phase separation (EPS), can be used in Alq(3)-based OSVs to achieve a large magnetoresistance (MR) up to 440% at T = 10 K and a typical electrical Hanle effect as the Hallmark of the spin injection. …”
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  15. 5675
    “…Interesting candidates are micron-sized nanosheets of Ca(2)Nb(3)O(10) which can be used as seed layers for perovskite materials on any substrate. We have used low-energy electron microscopy (LEEM) with in-situ pulsed laser deposition to study the subsequent growth of STO and LAO on such flakes which were deposited on Si. …”
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  16. 5676
    “…Moreover, the 5% potassium excess solution films have a perovskite structure without clear preferential orientation, whereas a (100) texture appears for 20% alkali excess solutions, being particularly strong for the 0.4 M solution concentration. …”
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  17. 5677
    “…Heat-treatments above these temperatures show that rhodium saturates out of the perovskite lattice at 1000 °C, yielding other secondary phases such as Ba(3)RhTi(2)O(9) behind. …”
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  18. 5678
    “…The characterization by X-ray diffraction of as-prepared powders showed that LSGM and LSM present a perovskite structure and pseudo-cubic symmetry. The thermal and chemical stability between the electrolyte (LSGM) and the electrode (LSM) were analyzed by dynamic X-ray diffraction as a function of temperature. …”
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  19. 5679
    “…[Image: see text] Excitons play major roles in optical processes in modern semiconductors, such as single-wall carbon nanotubes (CNTs), transition metal dichalcogenides, and 2D perovskite quantum wells. They possess extremely large binding energies (>100 meV), dominating absorption and emission spectra even at high temperatures. …”
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  20. 5680
    “…Epitaxial films may be released from growth substrates and transferred to structurally and chemically incompatible substrates, but epitaxial films of transition metal perovskite oxides have not been transferred to electroactive substrates for voltage control of their myriad functional properties. …”
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