Hierarchically Assembled 2D Nanoplates and 0D Nanoparticles of Lithium-Rich Layered Lithium Manganates Applicable to Lithium Ion Batteries

被引:42
作者
Baek, Ja Yeon [1 ]
Ha, Hyung-Wook [1 ]
Kim, In-Young [1 ]
Hwang, Seong-Ju [1 ]
机构
[1] Ewha Womans Univ, Dept Chem & Nano Sci, CINBM, Seoul 120750, South Korea
关键词
CATHODE MATERIALS; ELECTROCHEMICAL PERFORMANCE; ELECTRONIC-STRUCTURE; LIMN2O4; NANORODS; HIGH-POWER; MANGANESE; NANOWIRES; TRANSFORMATION; SUBSTITUTION; CAPACITY;
D O I
10.1021/jp904072r
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The porous hierarchical assembly of lithium-rich Li1+xMnO3-delta 2D nanoplates as well as isolated 0D nanocrystalline homologues has been synthesized via lithiation reactions of nanostructured manganese oxides under hydrothermal conditions. According to powder X-ray diffraction and electron microscopy, a hydrothermal LiOH treatment for nanostructured delta-MnO2 precursor produces a lithium-rich Li1+xMnO3-delta phase with the nanoworm-like hierarchically assembled 2D nanoplate morphology. After the lithiation reaction under identical conditions, the 1D nanowires of the alpha-MnO2 precursor are transformed into the 0D nanoparticles of the Li1+xMnO3-delta phase. The Mn K-edge X-ray absorption spectroscopic analysis for the lithiated materials clearly demonstrated that tetravalent manganese ions are stabilized in octahedral sites of a Li2MnO3-type layered structure composed of edge-shared MnO6/LiO6 octahedra. From electrochemical measurements, it was found that the lithiated Li1+xMnO3-delta nanostructured materials show much superior electrode performance over the precursor manganese oxides and bulk lithium-rich manganate. The powder X-ray diffraction analyses for the electrochemically cycled derivatives clearly demonstrated that the improvement of electrode performance after lithiation can be attributed to the phase transformation to the Li-rich Li1+xMnO3-delta phase with high structural stability. On the basis of the present experimental findings, we are able to Conclude that the present phase transformation route provides a new method not only to synthesize nanostructured lithium-rich manganese oxides with controllable dimensionality and morphology but also to improve the electrode performance of nanostructured manganese oxides.
引用
收藏
页码:17392 / 17398
页数:7
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