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In article number 1901584, Wei Yan, Guorui Yang, and co‐workers present direct in‐situ growth of free‐standing hierarchically branched TiO2/C nanofibers based on electrospinning and an alkali‐hydrothermal process as anode for sodium‐ion batteries. The large surface area, flexible feature and pseudocapacitive Na+ storage behavior provide the branched nanofibers with abundant active sites, smooth channels...
Herein, 1D free‐standing and binder‐free hierarchically branched TiO2/C nanofibers (denoted as BT/C NFs) based on an in situ fabrication method as an anode for sodium‐ion batteries are reported. The in situ fabrication endows this material with large surface area and strong structural stability, providing this material with abundant active sites and smooth channels for fast ion transportation. As...
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