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富锂层状氧化物Li1.23Ni0.09Co0.12Mn0.56O2的简便合成及其优异的锂存储性能,以及对层状氧化物材料在充放电循环过程中结构转变的新见解:原位XRD表征

Facile synthesis of the Li-rich layered oxide Li1.23Ni0.09Co0.12Mn0.56O2 with superior lithium storage performance and new insights into structural transformation of the layered oxide material during charge-discharge cycle: in situ XRD characterization.

作者信息

Shen Chong-Heng, Wang Qin, Fu Fang, Huang Ling, Lin Zhou, Shen Shou-Yu, Su Hang, Zheng Xiao-Mei, Xu Bin-Bin, Li Jun-Tao, Sun Shi-Gang

机构信息

Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University , Xiamen, Fujian 361005, China.

出版信息

ACS Appl Mater Interfaces. 2014 Apr 23;6(8):5516-24. doi: 10.1021/am405844b. Epub 2014 Apr 9.

Abstract

In this work, the Li-rich oxide Li1.23Ni0.09Co0.12Mn0.56O2 was synthesized through a facile route called aqueous solution-evaporation route that is simple and without waste water. The as-prepared Li1.23Ni0.09Co0.12Mn0.56O2 oxide was confirmed to be a layered LiMO2-Li2MnO3 solid solution through ex situ X-ray diffraction (ex situ XRD) and transmission electron microscopy (TEM). Electrochemical results showed that the Li-rich oxide Li1.23Ni0.09Co0.12Mn0.56O2 material can deliver a discharge capacity of 250.8 mAhg(-1) in the 1st cycle at 0.1 C and capacity retention of 86.0% in 81 cycles. In situ X-ray diffraction technique (in situ XRD) and ex situ TEM were applied to study structural changes of the Li-rich oxide Li1.23Ni0.09Co0.12Mn0.56O2 material during charge-discharge cycles. The study allowed observing experimentally, for the first time, the existence of β-MnO2 phase that is appeared near 4.54 V in the first charge process, and a phase transformation of the β-MnO2 to layered Li0.9MnO2 is occurred in the initial discharge process by evidence of in situ XRD pattrens and selected area electron diffraction (SAED) patterns at different states of the initial charge and discharge process. The results illustrated also that the variation of the in situ X-ray reflections during charge-discharge cycling are clearly related to the changes of lattice parameters of the as-prepared Li-rich oxide during the charge-discharge cycles.

摘要

在本工作中,通过一种名为水溶液蒸发法的简便路线合成了富锂氧化物Li1.23Ni0.09Co0.12Mn0.56O2,该路线简单且无废水产生。通过非原位X射线衍射(非原位XRD)和透射电子显微镜(TEM)证实,所制备的Li1.23Ni0.09Co0.12Mn0.56O2氧化物为层状LiMO2-Li2MnO3固溶体。电化学结果表明,富锂氧化物Li1.23Ni0.09Co0.12Mn0.56O2材料在0.1 C下的第1次循环中可提供250.8 mAhg(-1)的放电容量,在81次循环中的容量保持率为86.0%。采用原位X射线衍射技术(原位XRD)和非原位TEM研究了富锂氧化物Li1.23Ni0.09Co0.12Mn0.56O2材料在充放电循环过程中的结构变化。该研究首次通过实验观察到在首次充电过程中接近4.54 V处出现的β-MnO2相的存在,并且根据原位XRD图谱和初始充放电过程不同状态下的选区电子衍射(SAED)图谱证明,在初始放电过程中发生了β-MnO2向层状Li0.9MnO2的相变。结果还表明,充放电循环过程中原位X射线反射的变化与所制备的富锂氧化物在充放电循环过程中晶格参数的变化明显相关。

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