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Synthesis of ternary metal oxides as positive electrodes for Mg-Li hybrid ion batteries

机译:合成三元金属氧化物是积极的Mg-Li混合离子电池电极

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Rechargeable magnesium-ion batteries (MIBs) have emerged as promising energy storage systems owing to their highly stable magnesiation and de-magnesiation processes and high theoretical energy density. However, MIB technology is restricted by sluggish Mg2+ ion transportation inside the host cathode due to large impedance. Herein, a rechargeable Mg-Li hybrid ion battery (MLIB) is presented to achieve fast Mg2+ ion stripping/plating at a magnesium anode and Li+ ion intercalation/de-intercalation in a ternary transition metal oxide cathode. The (NiMnCo)(3)O-4 multi-shelled hollow spheres prepared by a one-step hydrothermal method followed by thermal treatment were employed as a positive electrode in a Mg-Li hybrid ion battery, with a magnesium metal anode and all-phenyl-complex based dual ion electrolytes. The resulting prototype MLIB delivered a reversible capacity of 550 mA h g(-1) at a current density of 50 mA g(-1), which is significantly higher compared with reported MLIBs. Furthermore, the prototype MLIB exhibited an affordable specific energy (368 W h kg(-1)) and cycle life (a capacity of 277 mA h g(-1) was retained even after 100 cycles at 100 mA g(-1)). The significant improvement in the electrochemical performance of the MLIB is achieved via rational design of the (NiMnCo)(3)O-4 cathode with a reduced Li+ ion diffusion length and stable deposition/dissolution of Mg at the anode without the occurrence of side reactions. Furthermore, ex situ XRD, SEM, ICP and EIS techniques were used to understand the reaction kinetics of guest ions inside the (NiMnCo)(3)O-4 hollow sphere cathode.
机译:充电镁离子电池(mib)成为有前途的能源存储系统由于他们的高度稳定magnesiation和de-magnesiation流程和较高的理论能量密度。受到缓慢Mg2 +离子运输主机内部阴极由于大阻抗。在此,一个充电Mg-Li混合离子电池(MLIB)提出了实现快速Mg2 +离子剥离/镀镁阳极和李+离子夹层/ de-intercalation三元过渡金属氧化物阴极。(NiMnCo) (3) O-4 multi-shelled空心球体由一个一步水热方法热处理被聘为紧随其后Mg-Li混合离子电池正极,镁金属阳极和基于all-phenyl-complex双离子电解质。生成的原型MLIB发表了可逆容量550毫安h g (1)电流密度的马50 g(1),这是明显高于与报道MLIBs。一个负担得起的特定的能量(368 W h公斤(1))容量和循环寿命(277 mA h g (1)保留即使100次100 g(1))。的显著改善MLIB的电化学性能通过设计合理的实现(NiMnCo) (3) O-4阴极与李+离子减少扩散长度和稳定沉积/ Mg在阳极溶解副反应的发生。原位XRD、SEM、ICP和EIS技术了解客人离子的反应动力学在(NiMnCo) (3) O-4空心球体阴极。

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