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首页> 外文期刊>Frontiers in Chemistry >Porous Hollow Superlattice NiMn2O4/NiCo2O4 Mesocrystals as a Highly Reversible Anode Material for Lithium-Ion Batteries
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Porous Hollow Superlattice NiMn2O4/NiCo2O4 Mesocrystals as a Highly Reversible Anode Material for Lithium-Ion Batteries

机译:多孔空心超晶格NiMn2O4 / NiCo2O4介晶作为锂离子电池的高度可逆阳极材料

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摘要

Abstract: As a promising high-capacity anode material for Li-ion batteries, NiMn2O4 always suffers from the poor intrinsic conductivity and the architectural collapse originating from the volume expansion during cycle. Herein, a combined structure and architecture modulation is proposed to tackle concurrently the two handicaps, via a facile and well-controlled solvothermal approach to synthesize NiMn2O4/NiCo2O4 mesocrystals with superlattice structure and hollow multi-porous architecture. It is demonstrated that the obtained NiCo1.5Mn0.5O4 sample is made up of a new mixed-phase NiMn2O4/NiCo2O4 compound system, with a high charge capacity of 532.2 mAh g?1 with 90.4% capacity retention after 100 cycles at a current density of 1 A g-1. The enhanced electrochemical performance can be attributed to the synergistic effects of the superlattice structure and the hollow multi-porous architecture of the NiMn2O4/NiCo2O4 compound. The superlattice structure can improve ionic conductivity to enhance charge transport kinetics of the bulk material, while the hollow multi-porous architecture can provide enough void spaces to alleviate the architectural change during cycling, and shorten the lithium ions diffusion and electron-transportation distances.
机译:【摘要】NiMn2O4作为一种有前景的高容量锂离子电池负极材料,其固有的电导率一直很差,并且由于循环过程中的体积膨胀而导致结构崩溃。在本文中,提出了一种结构和体系结构的组合调制方式,以同时解决两个障碍,通过一种容易控制的溶剂热方法合成具有超晶格结构和中空多孔结构的NiMn2O4 / NiCo2O4中间晶体。结果表明,所获得的NiCo1.5Mn0.5O4样品是由新的混合相NiMn2O4 / NiCo2O4复合体系组成,在电流密度下100次循环后,其高充电容量为532.2 mAh g?1,容量保持率为90.4%。 1 A g-1。增强的电化学性能可以归因于NiMn2O4 / NiCo2O4化合物的超晶格结构和中空多孔结构的协同效应。超晶格结构可以提高离子电导率,从而增强块状材料的电荷传输动力学,而中空的多孔结构可以提供足够的空隙空间,以减轻循环过程中的结构变化,并缩短锂离子的扩散和电子传输距离。

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