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Developing W18O49 electrode material with excellent high-speed charging/discharging characteristics

机译:开发具有优异的高速充放电特性的W18O49电极材料

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We previously reported that the oxygen vacancies of tungsten oxide (WO3) play an important role in determining the charging/discharging rate of lithium ion secondary batteries (LIBs). We synthesized oxygen-deficient tungsten oxide (W18O49) powder from WO3 nanoparticles and succeeded in fabricating on electrode with high-speed charging/discharging characteristics. This material has superior electron conductivity and enables ultrafast charging/discharging by forming tunnels in crystal structures that serve as diffusion paths for Li ions. In this study, we evaluated the change in the crystal structure of W18O49 during charging/discharging in the voltage range of 1.4 – 2.4 V (vs Li/Li(exp +)). The volume expansion rate was 2.7% at 1.4 V, and it was revealed that the volume expansion and contraction were reversible. Furthermore, we fabricated a laminated trial power storage device and evaluated its charging/discharging characteristics. It was found to have a higher energy density and double the power density compared with an electric double-layer capacitor (EDLC), indicating that the trial power storage device has superior ultrafast charging/discharging characteristics.
机译:我们之前报道,氧化钨(WO3)的氧空位在确定锂离子二次电池(LIBS)的充电/放电速率方面发挥着重要作用。我们通过WO3纳米颗粒合成缺氧氧化钨(W18O49)粉末,并在具有高速充电/放电特性的电极上成功制造。该材料具有优异的电子电导率,并且通过在用作Li离子的扩散路径的晶体结构中形成超速充电/放电。在本研究中,我们在1.4-2.4V的电压范围内的充电/放电期间评估了W18O49的晶体结构的变化(VS Li / Li(Exp +))。 1.4 V体积膨胀率为2.7%,揭示了体积膨胀和收缩是可逆的。此外,我们制造了层压试验蓄电装置,并评估其充电/放电特性。与电双层电容器(EDLC)相比,它发现具有更高的能量密度和功率密度的双倍,表明试验储电装置具有优异的超快充电/放电特性。

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