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The structure of MWNTs-AgNPs hybrid material is confirmed by scanning electron microscopy (SEM) and transmission electron microscopy (TEM).
The crystal structure of this material is confirmed to be Pmnb polymorph and the average grain size is about 80 100 nm.
Also, uniform distribution of manganese ferrite (MnFe2O4) on PANI surface and the N-doped carbon material is confirmed through EDX analysis.
Herein, by measuring the free CaO content as a function of aging period, source region, company, and storage position, using the ethylene glycol method, the feasibility of using electric furnace slag as a construction material is confirmed.
In addition, the material is confirmed to exhibit an excellent capacity of 28.33 mAh g1 at a current density of 1 A g1, which is much higher than MoO2-based supercapacitors reported before.
From X-ray diffraction peaks the phase of the core material is confirmed and the average particle size is determined from the width of the peaks to be 16, 21, and 19 nm for Fe@C, Co@C, and Ni@C, respectively.
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The homogeneous incorporation of F into the material was confirmed with XRD, EDS, and NMR.
Furthermore, platinum, which is well known as a catalytic material was confirmed.
The purity of the as-synthesized compound, which is a single phase material, was confirmed by Le Bail refinement of PXRD patterns.
The identity of the hybrid material was confirmed through Raman and X-ray photoelectron spectroscopy.
The porosity character of the material was confirmed by SEM analysis and CO2 adsorption/desorption studies at 0 °C.
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