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Graphene-Wrapped Anatase TiO2 Nanofibers as High-Rate and Long-Cycle-Life Anode Material for Sodium Ion Batteries

机译:石墨烯包裹的锐钛矿型TiO2纳米纤维作为钠离子电池的高速率和长寿命阳极材料

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摘要

Anatase TiO2 has been suggested as a potential sodium anode material, but the low electrical conductivity of TiO2 often limits the rate capability, resulting in poor electrochemical properties. To address this limitation, we propose graphene-wrapped anatase TiO2 nanofibers (rGO@TiO2 NFs) through an effective wrapping of reduced graphene oxide (rGO) sheets on electrospun TiO2 NFs. To provide strong electrostatic interaction between the graphene oxide (GO) sheets and the TiO2 NFs, poly(allylamine hydrochloride) (PAH) was used to induce a positively charged TiO2 surface by the immobilization of the -NH3+ group and to promote bonding with the negatively charged carboxylic acid (-COO) and hydroxyl (-O) groups on the GO. A sodium anode electrode using rGO@TiO2 NFs exhibited a significantly improved initial capacity of 217 mAh g−1, high capacity retention (85% after 200 cycles at 0.2C), and a high average Coulombic efficiency (99.7% from the second cycle to the 200th cycle), even at a 5C rate, compared to those of pristine TiO2 NFs. The improved electrochemical performances stem from highly conductive properties of the reduced GO which is effectively anchored to the TiO2 NFs.
机译:已经提出了锐钛矿型TiO2作为潜在的钠阳极材料,但是TiO2的低电导率通常会限制其速率能力,从而导致较差的电化学性能。为了解决这一局限性,我们提出了通过在电纺丝TiO2 NFs上有效包裹还原性氧化石墨烯(rGO)薄片的方法,将石墨烯包裹的锐钛矿型TiO2纳米纤维(rGO @ TiO2 NFs)。为了在氧化石墨烯(GO)片和TiO2 NFs之间提供强的静电相互作用,使用聚(烯丙胺盐酸盐)(PAH)通过固定-NH3 + 来诱导带正电的TiO2表面。基团并促进与GO上带负电荷的羧酸(-COO -)和羟基(-O -)的键合。使用rGO @ TiO2 NFs的钠阳极电极的初始容量显着提高,为217 mAh g -1 ,高容量保持率(在0.2C下200次循环后为85%)和高平均库仑效率(与原始TiO2 NFs相比,即使在5C的速率下,从第二个循环到第200个循环的99.7%也是如此。电化学性能的提高归因于还原后的GO的高导电性,该GO有效地固定在TiO2 NFs上。

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