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Dendrites may exhibit many types of electrical and morphological heterogeneities at the scale of a few micrometers.
Physical, electrical, and morphological properties of thermally annealed silver nanoparticle thin films are described.
The optical, electrical and morphological properties of the constituent layers were analyzed using an ultraviolet-visible photospectrometer, a 4-point probe and an atomic force microscopy (AFM), respectively.
Evolution of the electrical and morphological properties of micron-sized SnSb has been investigated to understand the electrochemical behavior observed during cycling experiments.
The influence of the experimental parameters in the final electrical and morphological properties of the obtained hybrid films was studied, mainly the presence of the monomer in solution, adsorbed or intercalated in CoTNTs.
The relationship between electrical and morphological properties of annealed Nafion samples is investigated by X-ray diffraction (XRD), small angle X-ray scattering (SAXS), atomic force microscopy (AFM), and impedance spectroscopy.
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Besides, thermal stability, electrical conductivity, and morphological properties of the films were examined by thermogravimetric analysis, electrical conductivity measurement, and scanning electron microscopy, respectively.
The influence of the film thickness (from 70 to 890 nm) on the electrical, structural and morphological properties are presented.
We have examined this issue by comparing neurotrophin effects on the regulation of electrical excitability and morphological differentiation in two strains of PC12 cells.
We investigated the electrical, optical and morphological properties of the Ga2O3 NP/SWNT layers by increasing the thickness of SWNTs via multiple dipping processes.
In this study, Au NPs with various concentrations indicated by the optical density (OD, from OD = 0.05 to 0.26, obtained from the absorption spectra) and sizes (from ~12 to ~26 nm) were doped into the PEDOT PSS buffer layer and the electrical, optical, and morphological properties of QLEDs were evaluated and analyzed in details.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com