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Three-Dimensional, Fibrous Lithium Iron Phosphate Structures Deposited by Magnetron Sputtering

机译:磁控溅射沉积的三维纤维状磷酸铁锂结构

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摘要

Crystalline, three-dimensional (3D) structured lithium iron phosphate (LiFePO4) thin films with additional carbon are fabricated by a radio frequency (RE) magnetron-sputtering process in a single step. The 3D structured thin films are obtained at deposition temperatures of 600 degrees C and deposition times longer than 60 min by using a conventional sputtering setup. In contrast to glancing angle deposition (GLAD) techniques, no tilting of the substrate is required. Thin films are characterized by X-ray diffraction (XRD), Raman spectrospcopy, scanning electron microscopy (SEM), cyclic voltammetry (CV), and galvanostatic charging and discharging. The structured LiFePO4 + C thin films consist of fibers that grow perpendicular to the substrate surface. The fibers have diameters up to 500 nm and crystallize in the desired olivine structure. The 3D structured thin films have superior electrochemical properties compared with dense two-dimensional (2D) LiFePO4 thin films and are, hence, very promising for application in 3D microbatteries.
机译:通过射频(RE)磁控溅射工艺,只需一步即可制造出具有附加碳的结晶,三维(3D)结构的磷酸铁锂(LiFePO4)薄膜。通过使用常规溅射装置,在600摄氏度的沉积温度和超过60分钟的沉积时间下获得3D结构化薄膜。与掠射角沉积(GLAD)技术相反,不需要基板倾斜。薄膜的特征在于X射线衍射(XRD),拉曼光谱,扫描电子显微镜(SEM),循环伏安法(CV)和恒电流充电和放电。结构化的LiFePO4 + C薄膜由垂直于基材表面生长的纤维组成。纤维的直径最大为500 nm,并以所需的橄榄石结构结晶。与致密的​​二维(2D)LiFePO4薄膜相比,3D结构的薄膜具有出色的电化学性能,因此非常有希望在3D微型电池中应用。

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