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High-Energy-Density Rechargeable Lithium–Nickel Chloride Aqueous Solution Batteries

机译:高能量密度可充电锂镍氯化物水溶液电池

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High-energy-density rechargeable batteries with performance beyond that of lithium-ion batteries are required for next-generation electric vehicles. We propose a novel rechargeable battery with a lithium anode and a NiCl_(2) aqueous cathode that is separated Li_(1.4)Al_(0.4)Ge_(0.2)Ti_(1.4)(PO_(4))_(3) as a water-stable lithium-ion-conducting solid electrolyte. The cell was discharged up to 93% of the theoretical cathode capacity at 0.5 mA cm~(–2) and 25 °C. The calculated energy density, based on the weights of NiCl_(2) and Li, and the average discharge voltage of 2.4 V at 0.5 mA cm~(–2), was 852 Wh kg~(–1), which is more than twice as high as that of conventional lithium-ion batteries. The cell was successfully cycled for 50 cycles without any degradation of the charge and discharge voltages at 0.5 mA cm~(–2) and 25 °C for 5 h charge and 5 h discharge, where the utilization of NiCl_(2) was 80%.
机译:下一代电动汽车需要性能超越锂离子电池的高能量密度可充电电池。我们提出了一种新颖的可再充电电池,该电池具有锂阳极和NiCl_(2)水性阴极,其与水Li_(1.4)Al_(0.4)Ge_(0.2)Ti_(1.4)(PO_(4))_(3)分开稳定的传导锂离子的固体电解质。在0.5 mA cm〜(–2)和25°C的温度下,电池的放电量高达理论阴极容量的93%。根据NiCl_(2)和Li的重量以及在0.5 mA cm〜(–2)下2.4 V的平均放电电压计算得出的能量密度为852 Wh kg〜(–1),是原来的两倍以上与常规锂离子电池一样高。在0.5 mA cm〜(–2)和25°C的条件下,该电池成功地循环了50个循环,充放电电压没有任何降低,充放电5 h和放电5 h,其中NiCl_(2)的利用率为80% 。

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