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Titlebook: Microstructure and Properties of Micro- and Nanoscale Materials, Films, and Coatings (NAP 2019); Selected Articles fr Alexander D. Pogrebnj

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Conference proceedings 2020their physical–mechanical, tribological, magnetic and electrical properties. Lastly, it explores the influence of a various surface modification methods, such as thermal annealing, pulsed laser modification, and thermomechanical and ultrasonic treatment, as well as different properties of nanostructured films..
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Electrical and Magnetic Behavior of GdOH Thin Films: A Search for Hydrogen Anion Superconductivity,d at about 40 K. Magneto-optical imaging registers effect of trapping magnetic flux typical for the superconducting state. The possible anion superconductivity is discussed in connection with recently published papers on near-room-temperature superconductivity in hydrides at high pressure and hydrogen-based superconductivity in biological systems.
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Temperature Dependence of Conductivity in Composite Film of Single-Walled Carbon Nanotubes with Gra electrons through barriers with a variable range hopping (VRH), which is common for disordered semiconductors. At higher temperatures (T > 240 K) the Arrhenius model was used. Such parameters as distance and energy of electron hopping as well as energy barriers were estimated.
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Structure and Properties of Nitride Coatings Based on Ti and Cr Synthesized by PIII&D Technique, the coatings. The level of compression stress and the size of crystallites in (Ti, Cr)N coatings are less than in TiN coatings obtained under similar conditions. All TiN and (Ti, Cr)N coatings have a high hardness of 29–36 GPa.
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Electrical and Magnetic Behavior of GdOH Thin Films: A Search for Hydrogen Anion Superconductivity,ydrides contain hydrogen in its rare negatively-charged anion state in combination with oxygen, which is also in the anion state. A range of GdOH films prepared on glass and single-crystalline substrates demonstrate a resistive transition from an insulating to conducting state with decrease of resis
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Transport Properties of Cubic Cuprous Iodide Films Deposited by Successive Ionic Layer Adsorption aexible poly(ethylene terephthalate) (PET) substrates in connection with their transport properties, and with electrical and thermoelectric properties as a whole. Temperature dependences of resistivity for most CuI films have the crossover from semiconducting to metallic behavior with increasing temp
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