材料科学
各向异性
不稳定性
原位
解耦(概率)
电极
格子(音乐)
平面的
凝聚态物理
失真(音乐)
压力(语言学)
纳米技术
化学物理
联轴节(管道)
微电子机械系统
降级(电信)
复合材料
阴极
八面体
结构稳定性
残余应力
纳米结构
光电子学
激活剂(遗传学)
阳极
分子物理学
悬空债券
雅恩-泰勒效应
作者
Manling Xiong,Zenan Xu,Zichi Chen,Gustaaf Van Tendeloo,Chuan Sun
出处
期刊:Small
[Wiley]
日期:2026-01-12
卷期号:22 (13): e11774-e11774
被引量:1
标识
DOI:10.1002/smll.202511774
摘要
The structural degradation remains a critical bottleneck in Mn-based layered cathodes due to strong Mn distortion and dissolution. While internal stresses are always associated with the intrinsic planar instability and are generally believed to exacerbate the octahedral distortion, our non-axial pre-bending strategy reveals a distinct stress-orbital coupling that leads to an anisotropic degradation pathway with enhanced Mn stability. Through MEMS chip-based in situ TEM studies, non-axial stress is found to induce a counteractive lattice distortion that reduces the cooperative Jahn-Teller effect by spatially decoupling axial and equatorial Mn─O bond deformations. As a result, the emergence of degenerate electronic ground states is suppressed, leading to reduced lattice distortion and enhanced kinetic stability. This work establishes a dedicated relationship between non-axial stress and orbital coupling, thereby offering a stress-orbital interaction strategy for designing stable layered cathodes.
科研通智能强力驱动
Strongly Powered by AbleSci AI