首页> 外文期刊>RSC Advances >Tunable pseudocapacitive contribution by dimension control in nanocrystalline-constructed (Mg0.2Co0.2Ni0.2Cu0.2Zn0.2)O solid solutions to achieve superior lithium-storage properties
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Tunable pseudocapacitive contribution by dimension control in nanocrystalline-constructed (Mg0.2Co0.2Ni0.2Cu0.2Zn0.2)O solid solutions to achieve superior lithium-storage properties

机译:通过尺寸控制在纳米晶构造的(Mg0.2Co0.2Ni0.2Cu0.2Zn0.2)O固溶体中可调整的拟电容贡献,以实现优异的锂存储性能

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Ultrafine crystalline materials have been extensively investigated as high-rate lithium-storage materials due to their shortened charge-transport length and high surface area. The pseudocapacitive effect plays a considerable role in electrochemical lithium storage when the electrochemically active materials approach nanoscale dimensions, but this has received limited attention. Herein, a series of (Mg _(0.2) Co _(0.2) Ni _(0.2) Cu _(0.2) Zn _(0.2) )O electrodes with different particle sizes were prepared and tested. The ultrafine (Mg _(0.2) Co _(0.2) Ni _(0.2) Cu _(0.2) Zn _(0.2) )O nanofilm (3–5 nm) anodes show a remarkable rate capability, delivering high specific charge and discharge capacities of 829, 698, 602, 498 and 408 mA h g ~(?1) at 100, 200, 500, 1000 and 2000 mA g ~(?1) , respectively, and a dominant pseudocapacitive contribution as high as 90.2% toward lithium storage was revealed by electrochemical analysis at a high scanning rate of 1.0 mV s ~(?1) . This work offers an approach to tune the lithium-storage properties of (Mg _(0.2) Co _(0.2) Ni _(0.2) Cu _(0.2) Zn _(0.2) )O by size control and gives insights into the enhancement of pseudocapacitance-assisted lithium-storage capacity.
机译:由于超细晶体材料缩短的电荷传输长度和高表面积,因此已被广泛研究为高速率锂存储材料。当电化学活性材料接近纳米级尺寸时,假电容效应在电化学锂存储中起着相当重要的作用,但这受到了有限的关注。在此,制备并测试了一系列具有不同粒径的(Mg _(0.2)Co _(0.2)Ni _(0.2)Cu _(0.2)Zn _(0.2))O电极。超细(Mg _(0.2)Co _(0.2)Ni _(0.2)Cu _(0.2)Zn _(0.2))O纳米膜(3-5 nm)阳极显示出显着的倍率能力,可提供高比充放电分别在100、200、500、1000和2000 mA g〜(?1)时的容量分别为829、698、602、498和408 mA hg〜(?1),对锂的主要伪电容贡献高达90.2%通过电化学分析以1.0mV s〜(Δ1)的高扫描速率揭示了储存。这项工作提供了一种通过尺寸控制来调节(Mg _(0.2)Co _(0.2)Ni _(0.2)Cu _(0.2)Zn _(0.2))O的锂存储特性的方法,并提供了增强的见解伪电容辅助的锂存储容量。

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