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Conduction mechanism in operating a LiMn2O4 cathode

机译:LiMn2O4阴极工作时的导电机理

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Two series of the LixMn2O4 spinet samples were studied at low temperatures (200-300 K) on electrical, thermal (DSC) and structural (X-ray diffraction (XRD)) properties for different lithium contents. Results obtained for deintercalated spinet samples with x similar to 1 revealed the existence of a broad (100 K) phase transition that can be attributed to the molecular polaron condensation, leading to the orthorhombic distortion of the initial cubic form. The differential scanning calorimetry (DSC) measurement results enable us to regard the phase transition as a form of order-disorder one. Corresponding thermoelectric power (TEP) and electrical conductivity measurements fall within such description, moreover, indicating clear inconsistency between the measured regular DC conductivity of the spinel sample and that observed for the cathode in the working lithium cell. This discrepancy points to an alternative charge transport mechanism existing in the manganese spinet cathode, and it seems to be essential for the lithium cell performance. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 10]
机译:在低温(200-300 K)下研究了两个系列的LixMn2O4尖晶石样品的不同锂含量的电,热(DSC)和结构(X射线衍射(XRD))特性。对于x近似于1的去嵌入的多晶棘突样品获得的结果表明,存在宽的(100 K)相变,这可归因于分子极化子的缩合,从而导致初始立方晶形的正交畸变。差示扫描量热法(DSC)的测量结果使我们能够将相变视为有序无序的一种形式。此外,相应的热电功率(TEP)和电导率测量值也属于此类描述,这表明尖晶石样品的常规直流电导率与工作锂电池中阴极所观察到的常规直流电导率之间存在明显的不一致。这种差异指出了锰尖晶石阴极中存在的另一种电荷传输机制,这似乎对于锂电池的性能至关重要。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:10]

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