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Electrical transport properties in LiMn2O4

机译:LiMn2O4中的电输运性质

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Bulk conductivity measurements by complex-plane impedance analysis and dielectric measurements have been carried out on LiMn2O4 together with four-probe dc conductivity measurements. The electrical conductivity consists of two thermally activated processes: one above 310 K and the other below 250 K. A dielectric relaxation process shows up at T > 310 K with an activation energy nearly equal to that required for the conduction above 310 K. Below 250 K, a dielectric relaxation also takes place but the activation energy is not available experimentally because this relaxation process requires frequencies below the lowest in the present work. The conduction behaviour is interpreted in terms of a hopping process of small polarons of e, electrons on Mn3+. The transition from low-temperature to high-temperature conduction is discussed in terms of the phase transformation due to the emergence of the I4(1)/amd phase in the Fd3m matrix caused by the cooperative Jahn-Teller effect of the high-spin Mn3+ ions. [References: 43]
机译:在LiMn2O4上通过复平面阻抗分析和电介质测量进行了大体积电导率测量,同时进行了四探针直流电导率测量。电导率由两个热激活过程组成:一个高于310 K,另一个低于250K。介电弛豫过程在T> 310 K处出现,其激活能量几乎等于310 K以上传导所需的能量。 K,也会发生介电弛豫,但实验无法获得活化能,因为该弛豫过程需要低于当前工作中最低频率的频率。导电行为是根据Mn3 +上电子的小极化子的跳跃过程来解释的。由于高自旋Mn3 +的协同Jahn-Teller效应引起的Fd3m基质中I4(1)/ amd相的出现,从相变的角度讨论了从低温传导到高温传导的转变。离子。 [参考:43]

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