Works matching DE "PEROVSKITE analysis"
Results: 181
Boosting the Efficiency of Perovskite Solar Cells with CsBr‐Modified Mesoporous TiO<sub>2</sub> Beads as Electron‐Selective Contact.
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- Advanced Functional Materials, 2018, v. 28, n. 15, p. 1, doi. 10.1002/adfm.201705763
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Octadecylamine‐Functionalized Single‐Walled Carbon Nanotubes for Facilitating the Formation of a Monolithic Perovskite Layer and Stable Solar Cells.
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- Advanced Functional Materials, 2018, v. 28, n. 10, p. 1, doi. 10.1002/adfm.201705545
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Underwater Performance Analysis of Perovskite Solar Cells.
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- Physica Status Solidi - Rapid Research Letters, 2023, v. 17, n. 2, p. 1, doi. 10.1002/pssr.202200208
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Probing Dy<sup>3+</sup> magnetic moments in multiferroic perovskite DyMnO<sub>3</sub> by optical spectroscopy.
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- Physica Status Solidi - Rapid Research Letters, 2016, v. 10, n. 6, p. 462, doi. 10.1002/pssr.201600076
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Advances in Perovskite-Based Solar Cells.
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- Journal of Informatics & Mathematical Sciences, 2017, v. 9, n. 2, p. 485
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Symmetry-mode analysis of the phase transitions in SrLaZnRuO<sub>6</sub> and SrLaMgRuO<sub>6</sub> ordered double perovskites.
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- Journal of Applied Crystallography, 2013, v. 46, n. 4, p. 1085, doi. 10.1107/S0021889813013253
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Consequences of Bi<sup>3+</sup> introduction for Pr<sup>3+</sup> in PrAlO<sub>3</sub>.
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- Journal of Materials Science, 2020, v. 55, n. 32, p. 15415, doi. 10.1007/s10853-020-05106-3
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Spontaneous morphology reconfiguration of luminescent CH<sub>3</sub>NH<sub>3</sub>PbBr<sub>3</sub> perovskites from monodispersed nanocrystals to discontinuous rings by dewetting-triggered solute migration.
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- Journal of Materials Science, 2019, v. 54, n. 2, p. 1248, doi. 10.1007/s10853-018-2935-7
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The effect of temperature on electric field assisted sintering in dye-sensitized solar cells.
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- Journal of Materials Science, 2019, v. 54, n. 2, p. 1629, doi. 10.1007/s10853-018-2934-8
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Large and temperature-insensitive piezoelectric strain in xBiFeO<sub>3</sub>-(1−x)Ba(Zr<sub>0.05</sub>Ti<sub>0.95</sub>)O<sub>3</sub> lead-free piezoelectric ceramics.
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- Journal of Materials Science, 2019, v. 54, n. 2, p. 1153, doi. 10.1007/s10853-018-2926-8
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Alleviating hysteresis and improving efficiency of MA<sub>1−y</sub>FA<sub>y</sub>PbI<sub>3−x</sub>Br<sub>x</sub> perovskite solar cells by controlling the halide composition.
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- Journal of Materials Science, 2018, v. 53, n. 24, p. 16500, doi. 10.1007/s10853-018-2780-8
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Ferroelectric electrocatalysts: a new class of materials for oxygen evolution reaction with synergistic effect of ferroelectric polarization.
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- Journal of Materials Science, 2018, v. 53, n. 2, p. 1414, doi. 10.1007/s10853-017-1611-7
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Behavior of BaCeZrYO in water and ethanol suspensions.
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- Journal of Materials Science, 2014, v. 49, n. 6, p. 2588, doi. 10.1007/s10853-013-7955-8
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First-principles study of CaCu<sub>3</sub>B<sub>4</sub>O<sub>12</sub> (B=Co, Rh, Ir).
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- Journal of Materials Science, 2012, v. 47, n. 21, p. 7660, doi. 10.1007/s10853-012-6530-z
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Mapping Atomic Displacements in Perovskite Structures using VecMap.
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- 2023
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- Abstract
Laser Wavelength Dependence on Perovskite Interface Elemental Diffusion During Atom Probe Experiments.
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- 2023
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Control of Extended Defect Growth in Perovskite Oxide Thin Films using Nanoscale Patterning.
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- 2023
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Exploiting 2D Perovskites for Catalyst Support Applications.
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- 2023
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A new nitrate-based energetic molecular perovskite as a modern edition of black powder.
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- Energetic Materials Frontiers, 2022, v. 3, n. 3, p. 122, doi. 10.1016/j.enmf.2022.07.003
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Effects of coupling between octahedral tilting and polar modes on the phase diagram of the ferroelectric perovskites PbZr 1−x Ti x O 3 and (Na 1/2 Bi 1/2 ) 1−x Ba x TiO 3.
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- Phase Transitions, 2014, v. 87, n. 3, p. 255, doi. 10.1080/01411594.2013.796590
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Excitation ofWet Perovskite Films by Ultrasonic Vibration Improves the Device Performance.
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- Applied Sciences (2076-3417), 2018, v. 8, n. 2, p. 308, doi. 10.3390/app8020308
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Perovskite Solar Cells: Analysis of Ion‐Diffusion‐Induced Interface Degradation in Inverted Perovskite Solar Cells via Restoration of the Ag Electrode (Adv. Energy Mater. 11/2018).
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- Advanced Energy Materials, 2018, v. 8, n. 11, p. 1, doi. 10.1002/aenm.201870047
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Material Discovery and Design Principles for Stable, High Activity Perovskite Cathodes for Solid Oxide Fuel Cells.
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- Advanced Energy Materials, 2018, v. 8, n. 11, p. 1, doi. 10.1002/aenm.201702708
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- Article
A Novel Perovskite SrTiO<sub>3</sub>-Ba<sub>2</sub>FeNbO<sub>6</sub> Solid Solution for Visible Light Photocatalytic Hydrogen Production.
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- Advanced Energy Materials, 2017, v. 7, n. 2, p. n/a, doi. 10.1002/aenm.201600932
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Modeling Thermochemical Solar-to-Fuel Conversion: CALPHAD for Thermodynamic Assessment Studies of Perovskites, Exemplified for (La,Sr)MnO<sub>3</sub>.
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- Advanced Energy Materials, 2017, v. 7, n. 1, p. n/a, doi. 10.1002/aenm.201601086
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Perovskite Solar Cell Stability in Humid Air: Partially Reversible Phase Transitions in the PbI<sub>2</sub>-CH<sub>3</sub>NH<sub>3</sub>I-H<sub>2</sub>O System.
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- Advanced Energy Materials, 2016, v. 6, n. 19, p. n/a, doi. 10.1002/aenm.201600846
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- Article
The Role of 3D Molecular Structural Control in New Hole Transport Materials Outperforming Spiro-OMeTAD in Perovskite Solar Cells.
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- Advanced Energy Materials, 2016, v. 6, n. 19, p. n/a, doi. 10.1002/aenm.201601062
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Full Optoelectronic Simulation of Lead-Free Perovskite/Organic Tandem Solar Cells.
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- Polymers (20734360), 2023, v. 15, n. 3, p. 784, doi. 10.3390/polym15030784
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Synthesis and Calculation of Structural, Morphologic, Electric, and Electronic Properties of the Sr $$_{2}$$ TiCrO $$_{6}$$ Double Perovskite.
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- Journal of Low Temperature Physics, 2015, v. 178, n. 3/4, p. 229, doi. 10.1007/s10909-014-1248-8
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Highly Efficient Inverted Perovskite Solar Cells with CdSe QDs/LiF Electron Transporting Layer.
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- Nanoscale Research Letters, 2017, v. 12, n. 1, p. 1, doi. 10.1186/s11671-017-2381-5
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Tailoring the Mesoscopic TiO Layer: Concomitant Parameters for Enabling High-Performance Perovskite Solar Cells.
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- Nanoscale Research Letters, 2017, v. 12, n. 1, p. 1, doi. 10.1186/s11671-016-1809-7
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Theoretical Investigation of Half-Metallic Ferromagnetism in Sodium-Based Fluoro-perovskite NaXF (X = V, Co).
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- Journal of Superconductivity & Novel Magnetism, 2018, v. 31, n. 1, p. 285, doi. 10.1007/s10948-017-4204-4
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Exploiting Magnetism and Magnetocaloric Effect in NdSrMnGa O.
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- Journal of Superconductivity & Novel Magnetism, 2017, v. 30, n. 8, p. 2227, doi. 10.1007/s10948-017-4046-0
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Superconductivity of Perovskite BaY(BiPb)O.
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- Journal of Superconductivity & Novel Magnetism, 2017, v. 30, n. 7, p. 1705, doi. 10.1007/s10948-017-3989-5
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Influence of Ag-doping in LaSrCoO on Its Structural and Magnetic Properties.
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- Journal of Superconductivity & Novel Magnetism, 2014, v. 27, n. 3, p. 851, doi. 10.1007/s10948-013-2361-7
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Investigation of Anomalous Magnetic Transition in PrSrCoO.
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- Journal of Superconductivity & Novel Magnetism, 2013, v. 26, n. 2, p. 463, doi. 10.1007/s10948-012-1765-0
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- Article
Enhancement of Magnetic and Dielectric Properties in Chemically Modified Multiferroic (0.90)BiFeCrO-(0.10)BaTiO Nanocomposite.
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- Journal of Superconductivity & Novel Magnetism, 2013, v. 26, n. 2, p. 397, doi. 10.1007/s10948-012-1736-5
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Enhancement of piezoelectric properties in KNN-based lead-free ceramics through controlled NaNbO<sub>3</sub> seed addition and phase structure engineering.
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- Journal of Materials Science, 2025, v. 60, n. 7, p. 3365, doi. 10.1007/s10853-025-10676-1
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All inkjet-printed perovskite-based bolometers.
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- NPJ Flexible Electronics, 2020, v. 4, n. 1, p. 1, doi. 10.1038/s41528-020-00097-2
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- Article
Tuning LSAF Perovskite Morphology by Synthesis Method.
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- Bilecik Seyh Edebali University Journal of Science / Bilecik Şeyh Edebali Üniversitesi Sosyal Bilimler Dergisi, 2021, v. 8, n. 2, p. 893, doi. 10.35193/bseufbd.975808
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Carrier Transfer Behaviors at Perovskite/Contact Layer Heterojunctions in Perovskite Solar Cells.
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- Advanced Materials Interfaces, 2019, v. 6, n. 2, p. N.PAG, doi. 10.1002/admi.201801253
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The Exploration of Carrier Behavior in the Inverted Mixed Perovskite Single‐Crystal Solar Cells.
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- Advanced Materials Interfaces, 2018, v. 5, n. 14, p. 1, doi. 10.1002/admi.201800224
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Tuning Excitonic Properties of Pure and Mixed Halide Perovskite Thin Films via Interfacial Engineering.
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- Advanced Materials Interfaces, 2018, v. 5, n. 14, p. 1, doi. 10.1002/admi.201800209
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- Article
Interface Engineering of a Compatible PEDOT Derivative Bilayer for High-Performance Inverted Perovskite Solar Cells.
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- Advanced Materials Interfaces, 2017, v. 4, n. 6, p. n/a, doi. 10.1002/admi.201600948
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Control of High Quality SrVO<sub>3</sub> Electrode in Oxidizing Atmosphere.
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- Advanced Materials Interfaces, 2016, v. 3, n. 18, p. n/a, doi. 10.1002/admi.201600274
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- Article
<sup>238</sup>U/<sup>230</sup>Th disequilibrium dating and trace element geochemistry of perovskite from late Quaternary alkali mafic rocks of the West Eifel Volcanic Field (Germany).
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- European Journal of Minerology, 2019, v. 31, n. 5/6, p. 875, doi. 10.1127/ejm/2019/0031-2883
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An inverse Ruddlesden-Popper nitride Ca<sub>7</sub>(Li<sub>1−x</sub>Fe<sub>x</sub>)Te<sub>2</sub>N<sub>2</sub> grown from Ca flux.
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- Philosophical Magazine Letters, 2018, v. 98, n. 3, p. 118, doi. 10.1080/09500839.2018.1497309
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- Article
Comparative Analysis of Perovskite Solar Cells for Obtaining a Higher Efficiency Using a Numerical Approach.
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- Micromachines, 2023, v. 14, n. 6, p. 1127, doi. 10.3390/mi14061127
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- Article
Visual Comfort Analysis of Semi-Transparent Perovskite Based Building Integrated Photovoltaic Window for Hot Desert Climate (Riyadh, Saudi Arabia).
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- Energies (19961073), 2021, v. 14, n. 4, p. 1043, doi. 10.3390/en14041043
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A Theoretical Study of Structural, Electronic and Elastic Properties of the Antiperovskite SnNCa<sub>3</sub>.
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- Journal of Natural & Applied Sciences, 2018, v. 22, n. 2, p. 482, doi. 10.19113/sdufbed.37948
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