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NiO/Carbon Aerogel Microspheres with Plum-Pudding Structure as Anode Materials for Lithium Ion Batteries

机译:锂离子电池负极材料的梅花形结构NiO /碳气凝胶微球

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摘要

To enhance the electrochemical performance of nickel oxide as anode materials for lithium ion batteries, NiO/carbon aerogel microspheres with a plum-pudding structure were designed and prepared by a sol-gel technique followed by two calcination processes under different atmospheres. Carbon aerogel microspheres (pudding) can act as a buffering and conductive matrix to enhance the structural stability and conductivity of the embedded NiO particles (plums), which are quite advantageous to the cycling performance and rate capability. Consequently, NiO/carbon aerogel microspheres with a plum-pudding structure deliver an initial charge capacity of 808 mAh g and a reversible capacity retention of 85% after 100 cycles. The enhancement in electrochemical performance relative to pure NiO microspheres suggests that the design of a plum-pudding structure is quite effective.
机译:为了提高作为锂离子电池负极材料的氧化镍的电化学性能,设计并制备了具有李子布丁结构的NiO /碳气凝胶微球,并通过溶胶-凝胶技术,然后在不同的气氛下进行两次煅烧工艺制备。碳气凝胶微球(布丁)可以充当缓冲和导电基质,以增强嵌入的NiO颗粒(李子)的结构稳定性和导电性,这对于循环性能和倍率性能非常有利。因此,具有李子布丁结构的NiO /碳气凝胶微球在100次循环后可提供808 mAh g的初始充电容量和85%的可逆容量保持率。相对于纯NiO微球,电化学性能的提高表明梅花布丁结构的设计非常有效。

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