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Physical and electrochemical properties of iron-doped lithium-manganese-spinels prepared by different methods

机译:不同方法制备的铁掺杂锂锰尖晶石的物理和电化学性能

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Solid solutions of the general formula LiFe(y)Mn(2-y)O4 (0 <= y <= 1) were prepared in two different ways using a classical solid-state synthesis (SSS) and an auto-ignition method (AIM). The samples structure and texture were characterized by X-ray diffraction and High Resolution Transmission Electron Microscopy. Electrical and electrochemical properties of the samples were investigated by conductivity measurements and by charge-discharge in galvanostatic mode versus Li. Samples with y > 0.7 obtained by AIM were not homogeneous and contained impurities of Li2MnO3 or spinel phases with different lattice parameters. The auto-ignition method technique allows us to obtain nanocrystalline materials with a particle size of 20-60 nm. The value of electrical capacity depends of preparation method: capacity of samples obtained by AIM is higher on the first cycle, however, it falls essentially already on the second cycle. (c) 2007 Elsevier B.V. All rights reserved.
机译:使用经典固态合成(SSS)和自燃方法(AIM)以两种不同方式制备通式为LiFe(y)Mn(2-y)O4(0 <= y <= 1)的固溶体)。通过X射线衍射和高分辨率透射电子显微镜表征样品的结构和质地。通过电导率测量以及在恒电流模式下相对于Li的充放电研究了样品的电和电化学性能。通过AIM获得的y> 0.7的样品不均匀,并且包含Li2MnO3杂质或具有不同晶格参数的尖晶石相。自燃方法技术使我们可以获得粒径为20-60 nm的纳米晶体材料。电容值取决于制备方法:通过AIM获得的样品的容量在第一个循环中较高,但是,基本上已经在第二个循环中下降。 (c)2007 Elsevier B.V.保留所有权利。

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