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首页> 外文期刊>Solid state ionics >High-capacity and fast Na-ion diffusion rate three-dimensional MoS2/SnS2-RGO anode for advanced sodium-ion batteries and sodium-ion capacitors
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High-capacity and fast Na-ion diffusion rate three-dimensional MoS2/SnS2-RGO anode for advanced sodium-ion batteries and sodium-ion capacitors

机译:用于先进钠离子电池和钠离子电容器的高容量和快速Na离子扩散速率三维MOS2 / SNS2-RGO阳极

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Sodium-ion batteries (SIBs) and Sodium-ion capacitors (SICs) have great promise for large-scale energy storage. However, the mismatch of electrode kinetics and charge-storage capacity between anode and cathode materials remains a challenge. Here three-dimensional self-assembled MoS2/SnS2-reduced graphene oxide (MoS2/SnS2-RGO) anode material with fast Na-ion diffusion rate and pseudocapacitive charge storage has been successfully prepared via a facile hydrothermal method. With this particular structure, the Na-ion diffusion coefficient of MoS2/SnS2-RGO calculated by GITT achieves 5.53 x 10(-7) cm(2) s(-1) during the desodiation process, which effectively improves the reaction kinetics for anode material. When tested against metal sodium in the potential window of 0.01-3.00 V, the optimized MoS2/SnS2-RGO delivers an excellent reversible capacity of 818.9 mA h g(-1) at a specific current of 100 mA g(-1) after 100 cycles and a superior rate capability of 555.4 mA h g(-1) at 2000 mA g(-1) over 500 cycles. So far, MoS2/SnS2-RGO possesses the highest reversible capacity among the reported anode materials. Furthermore, a SIC composed of optimized MoS2/SnS2-RGO anode and a CC cathode reaches a high specific energy of 113.9 W h kg(-1) at specific power of 561.25 W kg(-1). Similarly, a SIB consisted of the MoS2/SnS2-RGO anode and a Na3V2(PO4)(3)/C cathode displays the reversible discharge capacity of 56 mA h g(-1) at the high rates of 2 C.
机译:钠离子电池(SIBs)和钠离子电容器(SICS)对大型储能具有很大的承诺。然而,阳极和阴极材料之间的电极动力学和电荷存储容量的不匹配仍然是一个挑战。这里通过容易的水热法成功地制备了具有快速Na离子扩散速率和假偶联电荷存储的三维自组装MOS2 / SNS2-阳极材料。利用这种特殊的结构,通过GITT计算的MOS2 / SNS2-RGO的Na离子扩散系数在去划线过程中达到5.53×10(-7)cm(2)cm(2)厘米(2)厘米(2)厘米(2)厘米(2)厘米(-1),这有效改善了阳极的反应动力学材料。当潜在窗口中的金属钠在0.01-3.00V的潜在窗口中进行测试时,优化的MOS2 / SNS2-RGO在100 mA g(-1)之后,在100次循环之后,在100mA g(-1)的比电流下提供优异的可逆容量在2000 mA g(-1)超过500周期的优越速率能力为555.4 mA hg(-1)。到目前为止,MOS2 / SNS2-RGO在报告的阳极材料中具有最高的可逆能力。此外,由优化的MOS2 / SNS2-RGO阳极和CC阴极组成的SiC在561.25Wkg(-1)的特定功率下达到113.9WH kg(-1)的高特定能量。类似地,SIB由MOS2 / SNS2-RGO阳极和NA3V2(PO4)(3)/ C阴极组成,以2c的高速率显示56mA H G(-1)的可逆放电容量。

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