雅恩-泰勒效应
材料科学
尖晶石
失真(音乐)
八面体
锰
离子
锂(药物)
插层(化学)
阳离子聚合
容量损失
化学物理
无机化学
结晶学
纳米技术
凝聚态物理
光电子学
电化学
物理化学
冶金
电极
物理
量子力学
化学
高分子化学
内分泌学
放大器
医学
CMOS芯片
作者
Changjian Zuo,Zongxiang Hu,Rui Qi,Jiajie Liu,Zhibo Li,Junliang Lu,Cheng Dong,Kai Yang,Weiyuan Huang,Cong Chen,Zhibo Song,Sicheng Song,Yao-Ming Yu,Jiaxin Zheng,Feng Pan
标识
DOI:10.1002/aenm.202000363
摘要
Abstract The relatively low capacity and capacity fade of spinel LiMn 2 O 4 (LMO) limit its application as a cathode material for lithium‐ion batteries. Extending the potential window of LMO below 3 V to access double capacity would be fantastic but hard to be realized, as it will lead to fast capacity loss due to the serious Jahn–Teller distortion. Here using experiments combined with extensive ab initio calculations, it is proved that there is a cooperative effect among individual Jahn–Teller distortions of Mn 3+ O 6 octahedrons in LMO, named as cooperative Jahn–Teller distortion (CJTD) in the text, which is the difficulty to access the capacity beyond one lithium intercalation. It is further proposed that the cationic disordering (excess Li at Mn sites and Li/Mn exchange) can intrinsically suppress the CJTD of Mn 3+ O 6 octahedrons. The cationic disordering can break the symmetry of Mn 3+ arrangements to disrupt the correlation of distortions arising from individual JT centers and prevent the Mn 3+ O bonds distorting along one direction. Interestingly, with the suppressed CJTD, the original octahedral vacancies in spinel LMO are activated and can serve as extra Li‐ion storage sites to access the double capacity with good reversible cycling stability in microsized LMO.
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