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Facile synthesis of porous NiO hollow microspheres and its electrochemical lithium-storage performance

机译:多孔NiO空心微球的简便合成及其电化学储锂性能

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摘要

Novel porous NiO hollow microspheres are fabricated by a facile two-step method involving the ultrasound-assisted synthesis of nickel oxalate precursors and subsequent thermal annealing in air. The as-prepared NiO microspheres are composed of loosely packed nanoparticles with diameters around 30-80 nm, and have a main pore distribution from 3 to 20 nm with a mean pore size of 5.7 nm. When evaluated as anode material for lithium ion battery, the porous NiO hollow microspheres showed enhanced electrochemical performance with high lithium storage capacity, satisfactory cyclability and rate capacity. The reversible capacity of the NiO microspheres retained 380 mAh g~(-1) after 30 cycles at 200 mA g~(-1). Even when cycled at various rate for more than 60 cycles, the capacity could recover to 520 mAh g~(-1) for the current of 100 mA g~(-1). The good lithium-storage performance can be attributed to the unique porous architecture, which provides the structural flexibility for volume change and the routes for fast Li~+ diffusion.
机译:新型多孔NiO空心微球是通过一种简便的两步法制造的,该方法涉及超声辅助草酸镍前体的合成以及随后在空气中的热退火。所制备的NiO微球由直径约30-80 nm的松散堆积的纳米颗粒组成,其主孔分布为3至20 nm,平均孔径为5.7 nm。当评价为锂离子电池的负极材料时,多孔NiO空心微球显示出增强的电化学性能,具有高的锂存储容量,令人满意的循环能力和倍率容量。 NiO微球的可逆容量在200 mA g〜(-1)下经过30个循环后仍保持380 mAh g〜(-1)。即使以各种速率循环超过60个循环,在100 mA g〜(-1)的电流下,容量也可以恢复到520 mAh g〜(-1)。良好的锂存储性能可归因于独特的多孔结构,该结构提供了体积变化的结构灵活性以及快速的Li〜+扩散途径。

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