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首页> 外文期刊>Nanoscale >A three-dimensional porous MoP@C hybrid as a high-capacity, long-cycle life anode material for lithium-ion batteries
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A three-dimensional porous MoP@C hybrid as a high-capacity, long-cycle life anode material for lithium-ion batteries

机译:三维多孔MoP@C混合作为高容量、长周期生活的阳极材料锂离子电池

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摘要

Metal phosphides are great promising anode materials for lithium-ion batteries with a high gravimetric capacity. However, significant challenges such as low capacity, fast capacity fading and poor cycle stability must be addressed for their practical applications. Herein, we demonstrate a versatile strategy for the synthesis of a novel three-dimensional porous molybdenum phosphide@carbon hybrid (3D porous MoP@C hybrid) by a template sol-gel method followed by an annealing treatment. The resultant hybrid exhibits a 3D interconnected ordered porous structure with a relatively high surface area. Benefiting from its advantages of microstructure and composition, the 3D porous MoP@C hybrid displays excellent lithium storage performance as an anode material for lithium-ion batteries in terms of specific capacity, cycling stability and long-cycle life. It presents stable cycling performance with a high reversible capacity up to 1028 mA h g(-1) at a current density of 100 mA g(-1) after 100 cycles. By ex situ XRD, HRTEM, SAED and XPS analyses, the 3D porous MoP@C hybrid was found to follow the Li-intercalation reaction mechanism (MoP + xLi(+) + e(-) LixMoP), which was further confirmed by ab initio calculations based on density functional theory.
机译:金属磷化是伟大的有前途的阳极锂离子电池具有高的材料重量的能力。的挑战,如低能力,快速的能力衰落和贫穷循环稳定必须加以解决他们的实际应用。演示一个通用的战略合成一种新型三维多孔钼phosphide@carbon混合(三维多孔MoP@C混合)模板溶胶-凝胶的方法紧随其后的是一个退火处理。混合展示3 d互连命令相对较高的表面多孔结构区域。三维多孔微结构和成分MoP@C混合显示优秀的锂存储作为锂阳极材料性能电池的比容量,骑自行车稳定和长周期的生活。循环性能高的可逆的容量1028 mA h g(1)电流密度100 mA g(1) 100年以后周期。原位XRD、HRTEM、SAED和XPS分析、3 d多孔MoP@C混合被发现的Li-intercalation反应机理(拖把+ xLi (+)+ e (-) LixMoP),进一步证实了基于密度的从头开始计算功能理论。

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