Abstract:
In this report, we have demonstrated the morphological effect on the electrochemical performances of
hydrothermally synthesized NiMn2O4. Morphologies of the nanoparticles are varied using different
surfactants and mineralizer during synthesis. Three different surfactants namely cetyl trimethylammo nium bromide (CTAB), sodium dodecyl sulfate (SDS) and glucose and one mineralizer ammonium
fluoride (NH4F) are used all of which result in a spherically shaped particles with varying sizes. We have
seen that addition of SDS results in an agglomeration of spherical nano-particles of NiMn2O4 with good
interconnection between them. BrunauereEmmetteTeller (BET) surface area analysis confirms this
sample offers highest surface area with mesoporous structure amongst all these samples. A specific
capacitance of 1937 F g 1 is obtained for the same at 2 mV s 1 scan rate in 1 M aqueous Na2SO4 elec trolyte. A two-electrode asymmetric device has been fabricated using the sample as positive electrode
and activated carbon as negative electrode. The device offers a specific capacitance of 270 F g 1 with
excellent cyclic stability and good power and energy density. The superior performance of the device has
been validated by demonstrating the capability of the device to harvest energy from a solar cell and to
deliver the same through a LED.