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首页> 外文期刊>ACS applied materials & interfaces >Nanoscale Lamellar Monoclinic Li2MnO3 Phase with Stacking Disordering in Lithium-Rich and Oxygen-Deficient Li_(1.07)Mn_(1.93)O_(4-δ) Cathode Materials
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Nanoscale Lamellar Monoclinic Li2MnO3 Phase with Stacking Disordering in Lithium-Rich and Oxygen-Deficient Li_(1.07)Mn_(1.93)O_(4-δ) Cathode Materials

机译:富锂和缺氧的Li_(1.07)Mn_(1.93)O_(4-δ)阴极材料中具有堆积无序的纳米层状单斜Li2MnO3相

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摘要

The powdered crystalline samples of nominal composition Li_(1.07)Mn_(1.93)O_(4-δ) have been investigated by transmission electron microscopy (TEM) combined with X-ray powder diffraction (XRD) at room temperature. As suggested by the TEM observation, the dominant phase of the particles is a cubic spinel Li1+aMn2_"04_4- with space group Fdhm. A monoclinic Li2MnO3 phase with C2/m space group was also identified. Furthermore, the occurrence of nanoscale rotational twinning domains in Li2MnO3 with 120° rotation angles, stacked along the [l03]_m/[111]_c ("m" and "c" represent the monoclinic and cubic descriptions, respectively) axis was also observed. These nanoscale rotational twining domains are responsible for the pseudo-3-fold axis and their formation is supported by the superstructure reflections in selected-area electron-diffraction (SAED) patterns. Similar patterns were reported in the literature but may have been misinterpreted without the consideration of such domains. Consistent with the TEM observation, the XRD results reveal the increasing percentage of monoclinic Li2MnO3 with increasing annealing time, associated with more oxygen vacancies. In addition, the electron beam irradiation during TEM studies may cause the nucleation of nanoscale cubic spinel Li-Mn-O crystallites on the monoclinic Li2MnO3 grains. These results provide the detailed structural information about the Li_(1.07)Mn_(1.93)O_(4-δ) samples and advance the understanding of corresponding electrochemical properties of this material as well as other layer structured cathode materials for lithium-ion batteries.
机译:通过透射电子显微镜(TEM)结合X射线粉末衍射(XRD)在室温下研究了名义成分为Li_(1.07)Mn_(1.93)O_(4-δ)的粉末状晶体样品。透射电镜观察表明,颗粒的主相为立方晶尖晶石Li1 + aMn2_“ 04_4-,空间群为Fdhm。还发现了具有C2 / m空间群的单斜晶Li2MnO3相,并且发生了纳米级旋转孪晶还观察到了沿[103] _m / [111] _c(“ m”和“ c”分别代表单斜晶和立方晶格)轴堆叠的,具有120°旋转角的Li2MnO3畴,这些纳米级旋转孪晶畴负责伪三折轴的形成及其形成由选择区域电子衍射(SAED)模式中的超结构反射来支持,文献中也报道了类似的模式,但可能在不考虑此类域的情况下被误解了。透射电镜观察,X射线衍射结果表明,单斜晶Li2MnO3的百分含量随退火时间的增加而增加,并伴随着更多的氧空位。透射电镜研究可能会导致单斜晶Li2MnO3晶粒上的纳米立方尖晶石Li-Mn-O微晶成核。这些结果提供了有关Li_(1.07)Mn_(1.93)O_(4-δ)样品的详细结构信息,并增进了对该材料以及锂离子电池其他层结构阴极材料的相应电化学性能的理解。

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