材料科学
氧化物
阴极
兴奋剂
氧化铌
化学工程
离子
氧气
图层(电子)
表层
结构稳定性
纳米技术
无机化学
物理化学
光电子学
冶金
有机化学
化学
工程类
物理
结构工程
量子力学
作者
Shuai Liu,Zepeng Liu,Xi Shen,Weihan Li,Yurui Gao,Mohammad Norouzi Banis,Minsi Li,Kai Chen,Liang Zhu,Richeng Yu,Zhaoxiang Wang,Xueliang Sun,Gang Lü,Qingyu Kong,Xuedong Bai,Liquan Chen
标识
DOI:10.1002/aenm.201802105
摘要
Abstract The Li‐rich layer‐structured oxides are regarded as one of the most promising cathode materials for their high energy density but suffer from severe problems such as capacity fading, poor rate performance, and continuous potential dropping. These issues are addressed here by surface doping of niobium (Nb) and other heavy ions in a Li‐rich Mn‐based layered oxide, Li 1.2 Mn 0.54 Ni 0.13 Co 0.13 O 2 . The doped ions are verified to be located in the Li‐layer near the oxide surface; they bind the slabs via the strong NbO bonds and “inactivate” the surface oxygen, enhancing the structural stability. The specific capacity of the modified oxide reaches 320 mAh g −1 in the initial cycle, 94.5% of which remains after 100 cycles. More importantly, the average discharge potential drops only by 136 mV in this process. The findings of this study illustrate the importance of inactivating the surface oxygen in suppressing the cation mixing in the bulk, providing an effective strategy for designing high‐performance Li‐rich cathode materials.
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