Rezikyan Aram, Tanner Cameron, Berland Brian
Characterization Sciences Department, Corning Research and Development Corporation, 21 Lynn Morse Dr, Painted Post, NY 14870, USA.
Crystalline Materials Research Department, Corning Research and Development Corporation, 21 Lynn Morse Dr, Painted Post, NY 14870, USA.
Microsc Microanal. 2023 Jun 9;29(3):931-937. doi: 10.1093/micmic/ozad048.
An amorphous interphase between lithium phosphorus oxynitride (LIPON) solid electrolyte and lithium cobalt oxide (LCO) has been reported recently in several electron microscopy studies of Li ion thin-film micro-batteries (TFMB), along with its implications to battery operation. However, the origin of the observed interphase at the as-made LIPON/LCO interface remained obscure. In this work, this interface has been characterized comprehensively by scanning electron microscope (SEM) imaging at all steps of the in situ focused ion beam (FIB) lift-out procedure for transmission electron microscopy (TEM) sample preparation. It was found that the interphase is formed during TEM lamella preparation when the portion of LIPON layer contained within the lamella is physically disconnected from the rest of the LIPON layer by FIB. Therefore, it was demonstrated that a disordered interphase can form in LCO at its interface with LIPON during TEM sample preparation by the FIB lift-out procedure and that subtle nature of the interphase formation makes it likely to go unnoticed during the preparation. This interphase was not produced even after galvanostatic charging of a battery with a Li metal anode but inevitably appeared after the FIB lift-out of that sample.
最近,在几项关于锂离子薄膜微电池(TFMB)的电子显微镜研究中,报道了锂磷氮氧化物(LIPON)固体电解质与锂钴氧化物(LCO)之间存在非晶态界面,以及其对电池运行的影响。然而,在初始的LIPON/LCO界面处观察到的界面起源仍然不明。在这项工作中,通过扫描电子显微镜(SEM)成像,对用于透射电子显微镜(TEM)样品制备的原位聚焦离子束(FIB)取出过程的所有步骤中的该界面进行了全面表征。结果发现,当薄片内包含的LIPON层部分通过FIB与LIPON层的其余部分物理断开时,在TEM薄片制备过程中形成了界面。因此,证明了在通过FIB取出过程进行TEM样品制备期间,LCO与LIPON的界面处会形成无序界面,并且界面形成的微妙性质使得其在制备过程中很可能未被注意到。即使使用锂金属阳极对电池进行恒流充电后,这种界面也不会产生,但在对该样品进行FIB取出后不可避免地会出现。