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Formation of Layered-Layered Composites in the Li-Co-Mn Oxide Pseudoternary System during Slow Cooling

机译:慢冷却过程中Li-Co-Mn氧化物假三元体系中层状复合材料的形成

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Solution-based combinatorial samples of lithium cobalt manganese oxide were synthesized and studied by X-ray difiraction in order to map out the pseudoternary phase diagram over the entire metal composition ranges. This report focuses on the single-phase layered region found to be made up of a single composition line joining LiCoO2 to Li2MnO3. The solid solution was found to phase separate during slow cooling (1 °C/min). The end points of this coexistence are not LiCoO2 and Li2MnO3: instead the Co-rich phase contains some Mn and the Mn-rich phase contains some Co. This phase separation occurs at compositions where previous studies showed nanodomain phase separation when an intermediate cooling rate was used. The nanoscale composites are therefore an intermediate structure that forms when there is insufficient time during cooling for large scale crystallites of the new phases to form. A simple Monte Carlo simulation was used to illustrate this phase separation and study the impact of cooling rate.
机译:合成了基于溶液的锂钴锰氧化物样品,并通过X射线衍射对其进行了研究,以便绘制出整个金属成分范围内的准三元相图。本报告重点介绍了单相分层区域,该区域由连接LiCoO2和Li2MnO3的单一成分线组成。发现该固溶体在缓慢冷却(1°C / min)期间发生相分离。这种共存的终点不是LiCoO2和Li2MnO3:相反,富钴相包含一些Mn,而富锰相包含一些Co。以前的研究表明,当中间冷却速率为时,纳米域相分离会发生这种相分离。用过的。因此,纳米级复合材料是在冷却期间没有足够的时间形成新相的大规模微晶时形成的中间结构。一个简单的蒙特卡洛模拟用于说明这种相分离并研究冷却速率的影响。

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