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Influence of experimental parameter on the Li-content of LiMn2O4 electrodes produced by pulsed laser deposition

机译:实验参数对脉冲激光沉积制备LiMn2O4电极中Li含量的影响

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Thin film deposition by pulsed reactive crossed beam laser ablation has often advantages such as no need for annealing after deposition over conventional pulsed laser deposition. However, when depositing material from a target containing a low atomic mass component such as lithium, the resulting films are frequently sub-stoichiometric in the light elements. This is most probably due to scattering of the plasma plume in the crossed gas pulse, which creates a high local pressure. The light species are scattered more than the heavier elements, which leads to Li-deficiencies in the resulting film. Depositing lithium-spinels without the use of a crossed gas pulse is still strongly dependent on the applied background pressure. A background pressure below 10 Pa results also in lithium-deficient films. However, this is not due to scattering effects but very probably to the evaporation of lithium oxide from the growing film. These boundary conditions allow only a window of conditions for the growth of stoichiometric LiMn2O4 films that is useful as test electrodes for Li-batteries research. A strong influence of the experimental parameters was observed. The films deposited at different background pressures and different substrate/target distances showed very different behaviors in the electrochemical measurements. Extraction and insertion of lithium was only detected for films deposited at a distance between 3 and 4 cm and at a background pressure of 20 Pa, whereas films deposited at other conditions did not show this electrochemical activity. (c) 2005 Elsevier B.V All rights reserved.
机译:通过脉冲反应性交叉束激光烧蚀进行的薄膜沉积通常具有如下优点,例如与常规的脉冲激光沉积相比,不需要在沉积之后进行退火。然而,当从包含低原子质量组分的靶例如锂沉积材料时,所得的膜在轻元素中常常是亚化学计量的。这很可能是由于等离子体羽流在交叉的气体脉冲中的散射,从而产生了较高的局部压力。轻的物质比重的物质散射得更多,这导致所得膜中的锂缺乏。在不使用交叉气体脉冲的情况下沉积锂尖晶石仍然强烈取决于所施加的背景压力。低于10 Pa的背景压力也会导致锂不足的薄膜。然而,这不是由于散射效应,而是很可能是由于氧化锂从生长膜中蒸发所致。这些边界条件只为化学计量LiMn2O4薄膜的生长提供了一个条件窗口,该窗口可用作锂电池研究的测试电极。观察到实验参数的强烈影响。在不同的背景压力和不同的底物/目标距离下沉积的薄膜在电化学测量中表现出非常不同的行为。仅在3到4 cm之间的距离和20 Pa的背景压力下检测到了锂的提取和插入,而在其他条件下沉积的膜没有显示出这种电化学活性。 (c)2005 Elsevier B.V保留所有权利。

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