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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Anatase TiO2 as an Anode Material for Rechargeable Aqueous Aluminum-Ion Batteries: Remarkable Graphene Induced Aluminum Ion Storage Phenomenon
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Anatase TiO2 as an Anode Material for Rechargeable Aqueous Aluminum-Ion Batteries: Remarkable Graphene Induced Aluminum Ion Storage Phenomenon

机译:锐钛矿TiO2作为可再充电含水铝离子电池的阳极材料:卓越的石墨烯诱导铝离子储存现象

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摘要

The electrochemical intercalation and extraction of Al3+ ion in anatase TiO2 is illustrated in various aqueous electrolytes in an attempt to demonstrate the viability of TiO2 as an anode material for rechargeable aqueous aluminum-ion batteries. It is well understood that the primary barrier for diffusion of Al3+ ion in TiO2 is the poor electronic conductivity of TiO2. It is revealed that a small fraction of graphene (<2 wt %) could induce ultrafast diffusion of Al3+ ion in TiO2. Estimation shows that graphene remarkably enhances the Al3+ ion diffusion coefficient in TiO2 by 672 times. Discharge capacities in the range of 33-50 mAhg(-1) are obtained at a high current rate of 6.25Ag(-1) for graphene incorporated TiO2. It is also seen that the nature of electrolytes critically influences the Al3+ ion insertion phenomenon. The possibility of reversible crystal phase transition of TiO2 to aluminium titanate due to Al3+ ion intercalation-extraction is also demonstrated for the first time.
机译:在锐钛矿TiO 2中的电化学插入和提取Al3 +离子在各种含水电解质中示出,试图证明TiO2作为可再充电含水铝离子电池的阳极材料的活力。 众所周知,在TiO 2中的Al3 +离子扩散的主要屏障是TiO2的差的电子导电性差。 揭示了一小部分石墨烯(<2wt%)可以在TiO 2中诱导Al3 +离子的超快扩散。 估计表明,石墨烯显着地增强了TiO2中的Al3 +离子扩散系数672次。 在33-50mAhg(-1)范围内的放电容量以高速速率为6.25ag(-1)的石墨烯加入TiO 2。 还可以看出,电解质的性质严重影响Al3 +离子插入现象。 第一次也证明了由于Al3 +离子插入提取而可逆晶体相转变TiO 2至铝酸铝的可能性。

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