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In the past decade, most studies have focused on understanding and controlling the morphology and structures of InP NWs, such as tapering, reversible switching of growth direction, twin-plane superlattices, and structural transition [2 4, 7 11].
The morphology and structures of the prepared nanoparticles were then characterized using transmission electron microscopy (TEM, JEM-1400 JEOL).
The morphology and structures of the prepared samples were characterized using field-emission scanning electron microscopy (JEOL JSM-6500F, JEOL Ltd., Japan).
The morphology and structures of the black Fe3O4products were investigated by TEM. Figure 2a shows a representative TEM image of the products.
The morphology and structures of the nanowires were characterized by scanning electron microscopy, transmission electron microscopy and X-ray diffraction.
The morphology and structures of the samples were characterized by SEM and TEM, as displayed in Fig. 2. Figure 2a, b displays that SnO2 sample is composed of agglomerated nanoflowers, which are assembled by nanosheets.
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Fig. 3 The morphology and structure of the NMO/CNT.
The morphology and structure of the ternary nanocomposites were investigated.
The morphology and structure of electrospun nanofibers were characterized.
The morphology and structure of the products was observed by means of SEM and TEM.
The morphology and structure of the Co3O4@PPy hybrid composites were characterized by SEM and TEM.
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