Tsuji Junichi, Fujita Manabu, Haruyama Yuichi, Kanda Kazuhiro, Matsui Shinji, Ozawa Naoshi, Yao Takeshi, Taniguchi Kazuo
Toray Research Center, Inc., 3-3-7 Sonoyama, Otsu, Shiga 520-8567, Japan.
Anal Sci. 2005 Jul;21(7):779-81. doi: 10.2116/analsci.21.779.
The Li 1s XPS (X-ray Photoelectron Spectroscopy) spectra of LiMn2O4, which is one of the major positive-electrode materials in lithium-ion rechargeable batteries, and MnO2 as a reference material, were measured by a laboratory-type XPS spectrometer. The Li 1s peak was not observed in the spectra excited by the Mg Kalpha line (1253.6 eV), because the Li 1s peak overlapped the background of the Mn 3p peak of LiMn2O4. The photoionization cross section of Mn 3p was larger than that of Li 1s for Mg Kalpha excitation. Therefore, the XPS measurement of LiMn2O4 by soft X-ray synchrotron excitation was carried out at beamline BL-7B on NewSUBARU synchrotron facility. Excitation energies of 110, 120, 130, 140, 150 and 151.4 eV were selected. The Li 1s peak was clearly observed in these XPS spectra. In order to investigate the excitation energy dependence, the area ratio of the Li 1s and Mn 3p peaks in the XPS spectra was plotted against the excitation energy. As a result, when the excitation energy was 110 eV, the area ratio had the maximum value.
作为锂离子可充电电池主要正极材料之一的LiMn₂O₄以及作为参考材料的MnO₂的Li 1s X射线光电子能谱(XPS),是通过实验室型XPS光谱仪测量的。在由Mg Kα线(1253.6 eV)激发的光谱中未观察到Li 1s峰,因为Li 1s峰与LiMn₂O₄的Mn 3p峰的背景重叠。对于Mg Kα激发,Mn 3p的光电离截面大于Li 1s的光电离截面。因此,在NewSUBARU同步加速器设施的BL - 7B光束线上通过软X射线同步加速器激发对LiMn₂O₄进行了XPS测量。选择了110、120、130、140、150和151.4 eV的激发能量。在这些XPS光谱中清楚地观察到了Li 1s峰。为了研究激发能量依赖性,将XPS光谱中Li 1s和Mn 3p峰的面积比相对于激发能量作图。结果,当激发能量为110 eV时,面积比具有最大值。