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The electron transfer behaviour of multilayer films with different compositions were studied by cyclic voltammetry using [Fe CN 6]3−/4− as an electrochemical probe.
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However, the effect of another controllable parameter, periodic number or layer number of multilayer films, on the behavior of multilayer films has not been studied yet.
J.Y. performed the characterization of multilayer films.
Several types of multilayer films have been prepared and investigated in detail in terms of their film characteristics.
Therefore, the periodic number of multilayer films may become an effective degree of freedom to control the crystallization threshold of multilayer films.
Therefore, the dependence of laser-irradiated crystallization threshold on the period number of multilayer films may be ascribed to the superlattice effect of multilayer films.
Our results show that the periodic number of multilayer films may become another controllable parameter in the design and parameter optimization of multilayer phase change films.
However, the resonant frequency of multilayer films was decreased to 2.3 GHz simultaneously.
The cross-sectional morphologies of multilayer films are characterized using scanning electron microscopy (SEM).
The photodegradation behaviour of the multilayer films was investigated, by exposing them to controlled accelerated ageing.
The electrochemical behavior of the multilayer films was described.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com