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Copper-Doped Titanium Dioxide Bronze Nanowires with Superior High Rate Capability for Lithium Ion Batteries

机译:具有优异高倍率能力的铜掺杂钛白铜纳米线,用于锂离子电池

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Pristine and Cu-doped TiO2-B nanowires are synthesized by the microwave assisted hydrothermal method. The doped oxide exhibits a highly porous structure with a specific surface area of 160.7 m(2) g(-1). As evidenced by X-ray photoelectron spectroscopy and X-ray energy dispersive spectroscopy, around 2.0 atom % Cu2+ cations are introduced into TiO2-B, which leads to not only a slightly expanded lattice network but also, more importantly, a modified electronic structure. The band gap of TiO2-B is reduced from 2.94 to 2.55 eV, resulting in enhanced electronic conductivity. Cyclic voltammetry and electrochemical impedance spectroscopy reveal improved electrochemical kinetic properties of TiO2-B due to the Cu doping. The doped nanowires show a specific capacity of 18618 mAh g(-1) at the 10 C-rate with a capacity retention of 64.3% after 2000 cycles. Remarkably, our material exhibits a specific capacity of 150 mAh g(-1) at the 60 C rate, substantiating its superior high rate capability for rechargeable lithium batteries.
机译:通过微波辅助水热法合成了原始的和掺杂Cu的TiO2-B纳米线。掺杂的氧化物显示出具有160.7 m(2)g(-1)的比表面积的高度多孔结构。正如X射线光电子能谱和X射线能量色散能谱所证明的那样,将大约2.0原子%的Cu2 +阳离子引入了TiO2-B,这不仅导致晶格网络略微扩展,而且更重要的是,产生了修饰的电子结构。 TiO2-B的带隙从2.94 eV降低到2.55 eV,从而提高了电子导电率。循环伏安法和电化学阻抗谱表明,由于Cu掺杂,TiO2-B的电化学动力学性能得到改善。掺杂的纳米线在10 C速率下显示的比容量为18618 mAh g(-1),在2000次循环后的容量保持率为64.3%。值得注意的是,我们的材料在60 C的速率下显示出150 mAh g(-1)的比容量,从而证明了其对可充电锂电池的卓越高速率能力。

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