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(Co0.96Fe0.06)3O4Nanoparticles Embedded Porous Hollow Carbon Nanowire Derived from Co-based metal-organic Frameworks and Its Capacitive Behavior

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Figure

Figure 1.  Synthesis scheme of (Co0.94Fe0.06)3O4 nanoparticles embedded porous hybrid material
Figure 2. X-ray diffraction patterns recorded: pristine Co2(BDC)2(dabco) (black), after loading Fe(NO3)3 (red), after calcine in N2 (blue) and simulation (dark yellow)
Figure 3. Scanning electron microscopy (SEM) (left), energy dispersive spectrometer (EDS) (middle) and transmission electron microscope (TEM) data of: (a) pristine Co2(BDC)2(dabco); (b) after loading Fe(NO3)3 and (c) calcination of the as prepared precurso
Figure 4. (a) Nyquist plot of the (Co0.94Fe0.06)3O4@CON electrode; (b) Cyclic voltammetry curves of the (Co0.94Fe0.06)3O4@CON electrode with sweep rates from 2 mV·s-1 to 100 mV·s-1; (c) Glvanostatic charge and discharge curves of the (Co0.94Fe0.06)3O4@CON
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