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Catalyzing zinc-ion intercalation in hydrated vanadates for aqueous zinc-ion batteries

机译:催化锌离子电池水合钒酸盐中的锌离子嵌段

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Hydrated vanadium pentoxide (VOH) can deliver a gravimetric capacity as high as 400 mA h g(-1) owing to the variable valence states of the V cation from 5+ to 3+ in an aqueous zinc ion battery. The incorporation of divalent transition metal cations has been demonstrated to overcome the structural instability, sluggish kinetics, fast capacity degradation, and serious polarization. The current study reveals that the catalytic effects of transition metal cations are probably the key to the significantly improved electrochemical properties and battery performance because of the higher covalent character of 55% in the Cu-O bond in comparison with 32% in the Mg-O bond in the respective samples. Cu(ii) pre-inserted VOH (CuVOH) possesses a significantly enhanced intercalation storage capacity, an increased discharge voltage, great transport properties, and reduced polarization, while both VOH and Mg(ii) pre-inserted VOH (MgVOH) demonstrate similar electrochemical properties and performances, indicating that the incorporation of Mg cations has little or no impact. For example, CuVOH has a redox voltage gap of 0.02 V, much smaller than 0.25 V for VOH and 0.27 V for MgVOH. CuVOH shows an enhanced exchange current density of 0.23 A g(-1), compared to 0.20 A g(-1) for VOH and 0.19 A g(-1) for MgVOH. CuVOH delivers a zinc ion storage capacity of 379 mA h g(-1), higher than 349 mA h g(-1) for MgVOH and 337 mA h g(-1) for VOH at 0.5 A g(-1). CuVOH shows an energy efficiency of 72%, superior to 53% for VOH and 55% for MgVOH. All of the results suggest that pre-inserted Cu(ii) cations played a critical role in catalyzing the zinc ion intercalation reaction, while the Mg(ii) cations did not exert a detectable catalytic effect.
机译:由于在锌离子电池水溶液中,由于V阳离子的V阳离子的可变价态,水合钒二氧化钒(VOH)可以将重量容量提供高达400mA H(-1)的重量容量。已经证明了掺入二价过渡金属阳离子以克服结构不稳定,缓慢的动力学,快速降解和严重极化。目前的研究表明,过渡金属阳离子的催化作用可能是显着改善的电化学性能和电池性能的关键,因为Cu-O键在Mg-O中的32%相比,Cu-O键的较高的55%的共价特征在各个样本中的键。预插入的VOH(CUVOH)具有显着增强的嵌入储存能力,降低的放电电压,大运输性能和降低的偏振,而VOH和MG(II)预插入的VOH(MGVOH)展示了类似的电化学性能和性能,表明MG阳离子的掺入几乎没有影响。例如,CuVOH的氧化还原电压间隙为0.02V,对于MgVOH的VOH和0.27V小于0.25V。 CuVOH显示出0.23Ag(-1)的增强的交换电流密度,与0.20ag(-1)用于MgVOH的0.20ag(-1)。 CUVOH将锌离子储存容量为379mA H(-1),对于MgVOH和337mA H(-1)的349 mA H g(-1),用于voh的0.5Ag(-1)。 CuvoH显示出72%的能量效率为72%,voh优于53%,55%用于MgVOH。所有结果表明,预插入的Cu(II)阳离子在催化锌离子嵌入反应中发挥了关键作用,而Mg(II)阳离子并未发挥可检测的催化作用。

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