Microstructure and electrochemical performance of La2ZnMnO6 nanoflakes synthesized by facile hydrothermal route
In the present investigation, La 2 ZnMnO 6 nanoflakes have been synthesized by facile
hydrothermal route. The powder X-ray diffraction confirms that the La 2 ZnMnO 6 nanoflakes
exhibit orthorhombic structure with Pnma symmetry with observed lattice parameters, a=
5.5318 Å, b= 5.5704 Å and c= 7.8261 Å. The selected area electron diffraction pattern
analysis shows the formation of diffraction rings corresponding to orthorhombic structure.
The specific surface area is estimated to be~ 46 m 2/g with average pore diameter as 12 nm …
hydrothermal route. The powder X-ray diffraction confirms that the La 2 ZnMnO 6 nanoflakes
exhibit orthorhombic structure with Pnma symmetry with observed lattice parameters, a=
5.5318 Å, b= 5.5704 Å and c= 7.8261 Å. The selected area electron diffraction pattern
analysis shows the formation of diffraction rings corresponding to orthorhombic structure.
The specific surface area is estimated to be~ 46 m 2/g with average pore diameter as 12 nm …
Abstract
In the present investigation, La2ZnMnO6 nanoflakes have been synthesized by facile hydrothermal route. The powder X-ray diffraction confirms that the La2ZnMnO6 nanoflakes exhibit orthorhombic structure with Pnma symmetry with observed lattice parameters, a = 5.5318 Å, b = 5.5704 Å and c = 7.8261 Å. The selected area electron diffraction pattern analysis shows the formation of diffraction rings corresponding to orthorhombic structure. The specific surface area is estimated to be ~ 46 m2/g with average pore diameter as 12 nm. The presence of La3+, Zn2+, Mn3+/4+ ions on the surface of La2ZnMnO6 nanoflakes is observed via X-ray photoelectron spectroscopic analysis. The observed value of specific capacitance is 718.6 F/g at a scan rate of 1 mV/s. Furthermore, La2ZnMnO6 nanoflakes electrode has shown a retention of ~ 86% specific capacitance after 1000 cycles at a constant current density of 2.5 A/g.
Graphic abstract
Springer
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