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The contribution of phosphorus to the formation of the final charring layer and their morphological structures was studied by SEM, XRD and FTIR.
When the current densities were increased to −0.5 and −1.0 ma/cm2, a ZnO layer with nanoporous-like morphological structures was observed as shown in Figure 2c, d, respectively.
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Three distinct morphological structures were obtained.
Morphological structures were analyzed through SEM and AFM images.
In addition, their morphological structures were examined by X-ray diffraction.
These morphological structures were directly related to the thermal and mechanical properties of the final systems.
In addition, their imidization behaviours and morphological structures were investigated by o.d.s.c. and X-ray diffraction, respectively.
The films crystallographic and morphological structures were analyzed using X-ray diffraction (XRD) and atomic force microscopy (AFM) before corrosion test and scanning electron microscopy (SEM) after corrosion test.
A series of graphene (GE)/NiCo2O4 electrocatalysts with different morphological structures were controllably prepared in this study and their methanol oxidation electrocatalytic properties were also detailedly investigated.
In the middle TP concentration ranges, when the TP with low glass transition temperature (Tg) was used, dual morphological structures were formed.
Rule-based NER approaches are suitable when the orthographic and morphological structures are strongly defined, but maintaining the rules is costly and time consuming due to the need to cope with the problems of robustness and portability.
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