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Pulsed laser deposited iron fluoride thin films for lithium-ion batteries

机译:用于锂离子电池的脉冲激光沉积氟化铁薄膜

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Iron fluoride thin films were successfully grown by Pulsed Laser Deposition (PLD), and their physico-chemical properties and electrochemical behaviours were examined by adjusting the deposition conditions, such as the target nature (FeF2, or FeF3), the substrate temperature (T-s, <= 600 degrees C), the gas pressure (under vacuum or in oxygen atmosphere) and the repetition rates (2 and 10 Hz). Irrespective of the FeF2, or FeF3 target nature, iron fluoride thin films, deposited at 600 degrees C under vacuum, showed X-ray diffraction (XRD) patterns corresponding to the FeF2, phase. On the other hand, iron fluoride thin films deposited at room temperature (RT) from FeF2, target were amorphous, whereas the thin films deposited from FeF3 target consisted of a two-phase mixture of FeF3 and FeF2, showing sharp and broad diffraction peaks by XRD. respectively. Their electrochemical behaviour in rechargeable lithium cells was investigated in the 0.05-3.60 V voltage window. Despite a large irreversible capacity on the first discharge, good cycling life was observed up to 30 cycles. Finally, their electrochemical properties were compared to the ones of iron oxide thin films. (c) 2005 Elsevier B.V. All rights reserved.
机译:通过脉冲激光沉积(PLD)成功地生长了氟化铁薄膜,并通过调整沉积条件(例如目标性质(FeF2或FeF3),衬底温度(Ts, <= 600摄氏度),气压(在真空或氧气气氛中)和重复频率(2和10 Hz)。不论FeF2或FeF3靶材的性质如何,在600摄氏度的真空下沉积的氟化铁薄膜都显示出与FeF2相相对应的X射线衍射(XRD)图。另一方面,室温(RT)下从FeF2靶沉积的氟化铁薄膜是非晶态的,而从FeF3靶沉积的薄膜由FeF3和FeF2的两相混合物组成,显示出尖峰和宽衍射峰。 XRD。分别。在0.05-3.60 V电压范围内研究了它们在可充电锂电池中的电化学行为。尽管在首次放电时具有不可逆的大容量,但在长达30个循环后仍观察到良好的循环寿命。最后,将它们的电化学性质与氧化铁薄膜的电化学性质进行比较。 (c)2005 Elsevier B.V.保留所有权利。

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