Results 201 to 210 of about 4,435,043 (396)
The electrical conductivity of thin oil films. Part I.-General nature of the phenomenon
Herbert Edmeston Watson, Ajit Menon
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Engineering Strategies for 2D Layered Tin Halide Perovskite Field‐Effect Transistors
2D halide perovskites are promising candidates for field‐effect transistor (FET) applications due to their high stability and suppressed ion migration in the presence of bulky organic spacers. This review systematically summarizes the optimization engineering strategies of 2D perovskite FETs and future challenges, which provide guidance for developing ...
Shuanglong Wang+4 more
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Recent Advances in Amyloids Structural Studies and Thin Film Applications. [PDF]
Pechkova E+3 more
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Comment on ``X-Ray Stress Topography of Thin Films on Germanium'' [PDF]
Armin Segmüller, T. B. Light
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The metal–insulator transition temperature (TMI) is continuously tuned by the systematic change of relative thickness in VO2 and TiO2 films (tVO2/tTiO2${t_{{\mathrm{V}}{{\mathrm{O}}_2}}}/{t_{{\mathrm{Ti}}{{\mathrm{O}}_2}}}$) in freestanding TiO2/VO2/TiO2 tri‐layers.
Sungwon Lee+5 more
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Fabrication of Sol Gel Solution-Based Zinc-Tin Oxide/Carbon Nanotube Hybrid Thin-Film for Thin-Film Transistors. [PDF]
Kim YJ, Choi WS.
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Wall Motion by Reverse Néel Walls in Thin Films [PDF]
Carl E. Patton, F. B. Humphrey
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Enhancing Low‐Temperature Performance of Sodium‐Ion Batteries via Anion‐Solvent Interactions
DOL is introduced into electrolytes as a co‐solvent, increasing slat solubility, ion conductivity, and the de‐solvent process, and forming an anion‐rich solvent shell due to its high interaction with anion. With the above virtues, the batteries using this electrolyte exhibit excellent cycling stability at low temperatures. Abstract Sodium‐ion batteries
Cheng Zheng+7 more
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Preserving high-pressure solids via freestanding thin-film engineering. [PDF]
Liang T+16 more
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