期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
High magnetic field-induced structural transformation of NiFe_(2)O_(4)/Fe_(2)O_(3) heterostructures for enhancing lithium storage performance
1
作者 Jia-qi LIU Rong-yuan ZHANG +5 位作者 Xiao-yang WANG Jun WANG Tie LIU wei-bin cui Qiang WANG Shuang YUAN 《Transactions of Nonferrous Metals Society of China》 2025年第3期932-944,共13页
In response to the limitations of conventional chemical synthesis methods for the structural modulation of nanomaterials,an innovative high magnetic field-assisted wet chemical synthesis method was proposed to prepare... In response to the limitations of conventional chemical synthesis methods for the structural modulation of nanomaterials,an innovative high magnetic field-assisted wet chemical synthesis method was proposed to prepare NiFe_(2)O_(4)/Fe_(2)O_(3) heterostructures.It is found that the high-energy physical field could induce a more homogeneous morphology of NiFe_(2)O_(4)/Fe_(2)O_(3),accompanied by phase transformation from Fe_(2)O_(3) to NiFe_(2)O_(4).As a result,the optimized structure obtained under the magnetic field endows NiFe_(2)O_(4)/Fe_(2)O_(3) with enhanced performance for the lithium-ion battery anode,as evidenced by an increase of 16%(1200 mA·h/g)in discharge capacity and 24% in ultra-stable cycling performance(capacity retention of 97.1%).These results highlight the feasibility of high magnetic fields in modulating material structure and enhancing lithium storage performance. 展开更多
关键词 high magnetic field NiFe_(2)O_(4)/Fe_(2)O_(3) HETEROSTRUCTURE structural regulation lithium-ion battery anode
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部