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One-dimensional porous Fe2O3 nanotubes with 2µm length, 220nm outer diameter and 65nm wall thickness were firstly synthesized via a low temperature hydrothermal method followed by thermal treatment. As advanced anode for lithium ion batteries, porous Fe2O3 nanotubes exhibit obviously enhanced electrochemical properties in terms of lithium storage capacity (1050.1mAhg−1 at 100mAg−1 rate), initial coulombic...
Ternary CoNi2S4 one-dimensional nanorods with the average diameter of 200nm were synthesized by a simple hydrothermal method without any surfactant or template. One-dimensional geometry could improve the utilization of electrode material, shorten electron diffusion path, and accommodate the volume change during cycling. As an anode for lithium ion batteries, the CoNi2S4 nanorod material exhibits a...
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