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A novel specimen preparation of porous cathode materials in lithium-ion batteries for high-resolution transmission electron microscopy

机译:高分辨率透射电子显微镜锂离子电池多孔阴极材料的新型样本制备

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摘要

Micropores and fissures in cathode materials are associated with deterioration of electrochemical performance of lithium-ion batteries. Phase transformation is responsible for anisotropic volume change and pulverization in conjunction with an expansion of the pores and fissures, occurred dominantly at the outermost cathode particles where lithium ions are repeatedly diffused from parent structure to anode and vice versa. The gallium ion sources, in addition, penetrate into the vacuum and etch the particle in the vicinity of pores and fissures during the cross-sectioning process using focused ion beam. Herein, we propose a noble specimen preparation for high resolution transmission electron microscopy (TEM) by employing epoxy to infiltrate into micropores. The epoxy can retain the agglomerate of cathode particles and avoid ion-beam-induced damage and contamination as well as suppress the side reactions with moisture and oxygen even after exposure to the air for a few months. The well-designed specimen preparation enables in-depth TEM investigation on the microstructure and phase transformation occurred severely at the outerrnost regions of porous cathode particles.
机译:阴极材料中的微孔和裂缝与锂离子电池的电化学性能的劣化有关。相变负责各向异性体积变化和与孔隙和裂缝的膨胀结合粉碎,在最外层阴极颗粒中发生显着发生,其中锂离子从母体结构反复扩散到阳极,反之亦然。此外,镓离子源渗透到真空中并在使用聚焦离子束的横截面过程中蚀刻孔隙和裂缝附近。在此,通过使用环氧树脂将环氧树脂渗透到微孔中,为高分辨率透射电子显微镜(TEM)提出了一种惰性标本制剂。环氧树脂可以保留阴极颗粒的凝聚,并避免离子束诱导的损伤和污染,甚至在暴露于空气后几个月抑制了水分和氧的副反应。精心设计的样品制备能够对多孔阴极颗粒的OuterRNost区域严重发生的微观结构和相变的深度温度研究。

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