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A general strategy to construct uniform carbon-coated spinel LiMn2O 4 nanowires for ultrafast rechargeable lithium-ion batteries with a long cycle life

机译:构造均匀碳包覆尖晶石LiMn2O 4纳米线的通用策略,用于超快可充电锂离子电池,循环寿命长

摘要

Control over one-dimensional growth of spinel-type LiMn2O4 nanowires is challenging in the area of materials science due to their cubic crystal structure. The current strategy is to use a self-support template to fabricate LiMn2O4 nanowires, which is time-consuming and limits their large-scale commercial production. In this paper, we propose a general strategy to construct well-defined LiMn2O4 nanowires terminated with amorphous carbon at the edges by an ingenious method without using any template. Benefited from its unique carbon-coated nanowire structure, the electrode exhibits a capacitor-like rate performance and battery-like high capacity for long-time cycling. Even after 1500 cycles at an extremely high current density of 30 C, approximately 82% of its initial capacity can still be retained. Significantly, the strategy reported here will be beneficial and revelatory to manufacture other extensive one-dimensional robust carbon-decorated nanowires, paving new ways for future developments of ultrafast rechargeable lithium-ion batteries.
机译:由于其立方晶体结构,控制尖晶石型LiMn2O4纳米线的一维生长在材料科学领域具有挑战性。当前的策略是使用自支撑模板来制造LiMn2O4纳米线,这既费时又限制了其大规模的商业生产。在本文中,我们提出了一种通用策略,通过一种巧妙的方法,无需使用任何模板,即可构造清晰的,以无定形碳封端的LiMn2O4纳米线。得益于其独特的碳涂层纳米线结构,该电极具有类似于电容器的速率性能和类似于电池的高容量,可以长时间循环。即使在30 C的极高电流密度下经过1500次循环之后,仍可以保留其初始容量的约82%。重要的是,本文报道的策略对于制造其他广泛的一维坚固的碳修饰纳米线将是有益和具有启发性的,为超快速可充电锂离子电池的未来发展铺平了新途径。

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