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The morphological, electrical, and chemical properties of all electrodes were investigated.
The morphological, electrical and biological properties of the resulting multilayered material were also investigated.
The chemical structural, morphological, electrical and optical properties of ROD films have been studied.
Influence of calcination temperature in Ar atmosphere on structural, morphological, electrical and optical properties on CZTS films has been investigated.
In conclusion, the structural, morphological, electrical, and optical characteristics of AZO and GZO thin films were observed, and Ga doping seems to be more effective than Al doping.
Role of pH of the precursor solution on structural, morphological, electrical and optical properties was investigated, for SnS films prepared using chemical spray pyrolysis (CSP) technique.
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The morphological, optical, structural, electrical and photoelectrochemical properties of the Fe2O3 thin films were studied according to the different precursor concentrations, and the relationships between each property were systematically analyzed.
The morphological, optical, structural, electrical, and photoelectrochemical properties were measured by field emission scanning electron microscopy (FE-SEM), UV vis spectroscopy (UV vis), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), electrochemical impedance spectroscopy (EIS), and three-electrode potentiostat measurements, respectively.
The structural, morphological, electrical, thermal and mechanical properties of resultant PS/pGR nanocomposites with various pGR contents were systematically investigated.
Morphological, electrical, electrochemical and optical properties of the counterelectrode were characterized by scanning electronic microscopy, four-probe measurement, electrochemical impedance spectroscopy, cyclic voltammetry and UV vis reflection spectroscopy, respectively.
The structural, microstructural, morphological, electrical, magnetic, mechanical and oxidation properties were evaluated and compared with those exhibited by the binary Ni Cu alloy, as well as by Ni W and pure Ni.
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