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Rational design of the pea-pod structure of SiO_(x)/C nanofibers as a high-performance anode for lithium ion batteries
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作者 Yuchao Zheng Xiangzhong Kong +4 位作者 ibrahim usman Xuefang Xie Shuquan Liang Guozhong Cao Anqiang Pan 《Inorganic Chemistry Frontiers》 2020年第8期1762-1769,共8页
Silicon oxides(SiO_(x))are regarded as one of the most potential anode materials for lithium-ion batteries with the advantages of a high theoretical capacity,low discharge platform(<0.5 V)and environmental friendli... Silicon oxides(SiO_(x))are regarded as one of the most potential anode materials for lithium-ion batteries with the advantages of a high theoretical capacity,low discharge platform(<0.5 V)and environmental friendliness.However,the low electronic conductivity and the degradation of the structure upon cycling have limited the electrochemical performance of SiO_(x).In this work,a conductive carbon fiber network wrapped SiO_(x)/C composite has been fabricated via combined electrospinning and carbonization methods.Importantly,the loading of SiO_(x) in the composite can be adjusted by changing the addition amounts of organosilica-polymer nanospheres during the electrospinning process.When utilized as an anode material for LIBs,the novel SiO_(x)/C composite exhibited good cycling stability and rate capabilities.The superior electrochemical performance can be ascribed to the special carbonaceous conductive network structure,which guarantees enhanced overall ion and electron transportation and structural integrity.The present work offers insights into the rational design of silicon-based materials for advanced lithium ion batteries. 展开更多
关键词 rational design SiOx C nanofibers combined electrospinning carbonization methods pea pod structure conductive carbon fiber network anode materials low electronic conductivity silicon oxides sio x
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