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首页> 外文期刊>Thin Solid Films >Domain formation in lithium-rich manganese-nickel-cobalt-oxide epitaxial thin films and implications for interpretation of electrochemical behavior
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Domain formation in lithium-rich manganese-nickel-cobalt-oxide epitaxial thin films and implications for interpretation of electrochemical behavior

机译:富锂锰-镍-钴-氧化物外延薄膜中的畴形成及其对电化学行为的解释意义

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摘要

AbstractDue to the directional dependence of physical properties, it is advantageous to grow and then study materials in specific orientations. Films of battery materials grown in epitaxy offers the possibility to gain new insight into the role of physical structure on electrochemical behaviors. Here we demonstrate the growth, testing, and characterization of monoclinic-phase (space groupC2/m) Li-Mn-Ni-Co-O epitaxial films. The monoclinic phase is a layered structure and as such lithium diffusion is favored along specific crystallographic directions. Films were grown by pulsed laser deposition onto SrRuO3/SrTiO3substrates with (001) and (111) orientations. Cyclic voltammetry measured the response of these positive electrode materials, while the film structure was characterized using scanning transmission electron microscopy. A combination of imaging and diffraction identifies the presence of orientational variants. Variants disrupt the orientation anisotropy expected of these layered materials when grown in epitaxy, thereby masking differences in electrochemical behavior as a function of substrate orientation. Learning to control the domain structure now presents itself as a challenge to realize the potential of low symmetry battery materials grown in epitaxy on high symmetry substrates.HighlightsEpitaxial films of Li-Mn-Ni-Co-O were deposited by pulsed laser deposition.The film forms in the monoclinic (C2/m) phase with a spinel impurity.Orienational variants are identified by transmission electron microscopy.Cyclic voltammetry measurements are made on the positive electrode material.
机译: 摘要 由于物理属性的方向依赖性,在特定方向上生长然后研究材料是有利的。外延生长的电池材料薄膜提供了对物理结构在电化学行为中作用的新认识。在这里,我们证明了单斜晶相(空间群 C 2 / m )的生长,测试和表征Li-Mn-Ni- Co-O外延膜。单斜晶相是层状结构,因此有利于锂沿特定晶体学方向的扩散。通过脉冲激光沉积在具有(001)的SrRuO 3 / SrTiO 3 基板上生长薄膜和(111)方向。循环伏安法测量了这些正极材料的响应,同时使用扫描透射电子显微镜表征了膜结构。成像和衍射的组合识别定向变体的存在。当在外延生长时,变体破坏了这些层状材料预期的取向各向异性,从而掩盖了作为衬底取向的函数的电化学行为的差异。现在,学习控制域结构本身是实现高对称衬底上外延生长低对称电池材料潜力的挑战。 突出显示 通过脉冲激光沉积来沉积Li-Mn-Ni-Co-O的外延膜。 < / ce:list-item> 尖晶石杂质的单斜晶相( C 2 / m )。 通过变流电子显微镜鉴定了东方变种。 在正极材料上进行循环伏安法测量。

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