电化学
材料科学
锂(药物)
阴极
电解质
碱金属
表面改性
氧化物
图层(电子)
自行车
涂层
化学工程
冶金
纳米技术
电极
化学
物理化学
有机化学
内分泌学
工程类
医学
考古
历史
作者
Yingling Liao,Jianbin Li,Bangwei Deng,Hao Wang,Tao Chen,Xuan Li,Meizhen Qu,Xiang Li,Gongchang Peng
标识
DOI:10.1002/ente.201901133
摘要
Overlithiated oxide (OLO) materials have received great attention because of their higher recharge capacity (>250 mA h g −1 ) than that of commercial Li‐ion cathode materials. However, they still have some problems such as poor cyclic stability and rate capability. In this study, La(PO 3 ) 3 is coated on Li 1.144 Ni 0.136 Co 0.136 Mn 0.544 O 2 by the dry coating method. The results indicate that 1.0 wt% La(PO 3 ) 3 –coated Li 1.144 Ni 0.136 Co 0.136 Mn 0.544 O 2 delivers a remarkably high rate capability, with a discharge capacity of 163 mA h g −1 even at 5 C, and an excellent cycling performance of 193 mA h g −1 after cycling 100 times at 1 C. The enhanced electrochemical performance comes from the formation of a hybrid protection layer mainly containing Li, La, P, and O (LLPO), which uses residual alkali compounds, LiOH and Li 2 CO 3 , as the lithium source and reacts with La(PO 3 ) 3 . LLPO can not only protect the Li‐rich cathodes from contacting the electrolyte directly, but also reduce the charge transfer resistance. More importantly, it can serve as a Li + conductor, which is beneficial for elevation of the rate capability.
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