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The paper demonstrates our last achievement in development of the novel scintillating screens based on single crystalline films (SCF) of Ce doped multicomponent garnets using the Liquid Phase Epitaxy (LPE) method.
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A numerical and experimental study of the anisotropy of the magnetoelectric (ME) response in tri-layered composites based on single-crystalline piezoelectrics has been carried out.
Up to now, most of OFETs based on single-crystalline organic micro-/nanocrystals demonstrate mobility over 1.0 cm2 V−13s−16[6, 17, 16, 17].
In this paper, self-powered UV detectors were fabricated based on single-crystalline rutile TiO2 nanorod arrays (TNAs), which were grown directly on fluorine-doped tin oxide (FTO) glass by a low-temperature hydrothermal method.
Here we report the neural electrode with subcellular dimensions based on single-crystalline gold nanowires (NWs) with a diameter of ∼100 nm.
Yang, B. et al. Perovskite solar cells with near 100% internal quantum efficiency based on large single crystalline grains and vertical bulk heterojunctions.
The paper is dedicated to development of UV emitting scintillating screens for microimaging applications based on the single crystalline films (SCFs) of Ce doped Gd1−xLuxAlO3 and Pr1−xLuxAlO3 (x=0–1) multicomponent perovskites grown onto YAlO3 (YAP) substrates using the liquid phase epitaxy (LPE) method with the objective to improve the X-ray stopping power.
Up to now, the most popular MJ solar cells are based on III-V semiconductors (e.g., GaInP/GaInAs) epitaxially grown on single crystalline Ge substrate [5,6].
A novel nanocomposite based on mesoporous single-crystalline TiO2 particles (TiO2 mesocages) threaded with carbon nanotubes (CNTs) has been successfully synthesized via a facile solvothermal method.
To further optimize the device performance, we also fabricated OFETs based on the single-crystalline nanoribbon arrays with different channel lengths (Fig. S5).
However, since the process and physical limitations of the device limit the scaling of the flash NVM that is based on a single-crystalline Si substrate, according to Moore's law, the three-dimensional (3D) multi-layer stack memory provides a high-density flash memory solution.
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