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TiO2_2 nanotubes with different spacing, Fe2_2O3_3 decoration and their evaluation for Li-ion battery application

Published 14 Apr 2020 in physics.app-ph and cond-mat.mtrl-sci | (2004.14275v1)

Abstract: In present work, we report on the use of organized TiO2_2 nanotube layers with a regular intertube spacing for the growth of highly defined α\alpha-Fe2_2O3_3 nano-needles in the interspace. These α\alpha-Fe2_2O3_3 decorated TiO2_2 NTs are then explored for Li-ion battery applications and compared to classic close-packed NTs that are both decorated with various amounts of nanoscale α\alpha-Fe2_2O3_3. We show that nanotubes with tube-to-tube spacing allow a uniform decoration of individual nanotubes with regular arrangements of hematite nano-needles. The tube spacing also facilitates the electrolyte penetration as well as yields better ion diffusion. While bare close-packed NTs show higher capacitance, e.g., 71 μ\muAh cm-2 than bare spaced NTs with e.g., 54 μ\muAh cm-2, the hierarchical decoration with secondary metal oxide, α\alpha-Fe2_2O3_3, remarkably enhances the Li-ion battery performance. Namely, spaced nanotubes with α\alpha-Fe2_2O3_3 decoration have an areal capacitance of 477 μ\muAh cm-2, i.e., show up to nearly ~8 times higher capacitance. However, the areal capacitance of close-packed NTs with α\alpha-Fe2_2O3_3 decoration saturates at 208 μ\muAh cm-2, i.e., is limited to ~3 times increase.

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