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The composition and morphology of the obtained composites are characterized by infrared spectroscopy, X-ray diffraction and scanning electron microscopy.
The morphology, composition and structure of the obtained composites were confirmed by SEM, TEM, XRD, Raman and XPS characterizations.
The obtained composites exhibited improved thermal and mechanical properties.
XPA showed that obtained composites are heterogeneous material.
It was established that obtained composites are heterogeneous material.
The obtained composites were designated as SFLNSCs and SFCNSCs corresponding to LiBr and Ajisawa's reagent, respectively.
This paper investigates the fracture properties of the obtained composites.
This unique array architecture provides good electrochemical supercapacitor performances for the obtained composites.
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TGA was used to characterize the iron oxide content in the as-obtained composites.
The as-obtained composites exhibited a three-dimensional architecture with core shell, yolk shell and hollow interior structure.
As-obtained composites were characterized by means of XRD, SEM and BET analytical techniques.
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