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The morphology, structural and textural properties of the catalysts were investigated.
The preparation method of the support has a significant effect on the morphology, structural, and textural properties of the catalysts, and also on the hydrogenolysis activity.
The morphology, structural, and optical properties of the annealed nanostructures were studied using X-ray diffraction, scanning electron microscopy, energy-dispersive X-ray spectroscopy [EDS], and UV-Visible diffuse reflectance spectroscopy techniques.
The effects of the applied potential and the concentration of ammonium chloride (NH4Cl) on the morphology, structural and optoelectronic properties of the ZnO Cl NWs were comprehensively investigated.
The morphology, structural and electrochemical properties of the electrode was characterized by X-Ray diffraction, X-Ray photoelectron spectroscopy and electrochemical methods.
The morphology, structural and electrochemical behavior were characterized by means of SEM, X-ray diffraction analysis and electrochemical charge discharge tests.
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The coated films were characterized for their morphologies, structural and electrochemical properties.
After the ECR plasma treatment with a H2/O2ratio of 40/10 (sccm/sccm), as depicted in Fig. 2c, d, the morphologies, structural and the diameter distributions of the sample do not show any observable difference in comparison with those of the pristine sample.
XRD, TEM, Raman and FTIR techniques were used to confirm the phase and degree of oxidation, morphology, structural information and chemical structure of the synthesized GO NSs.
In this work, the influences of chemical composition and annealing processing on the phase morphology, structural evolution and associated magnetocaloric effect have been investigated in off-stoichiometric La1+xFe13−ySiy (x = 0.2 1.2 and y = 1.1 1.8) alloys.
The information on surface morphology, structural characteristics and bulk composition of the catalyst was obtained using SEM, XRD and EDX.
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