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ZnO nanoparticles' decorated reduced-graphene oxide: Easy synthesis, unique polarization behavior, and ionic conductivity

机译:ZnO纳米颗粒修饰的氧化石墨烯:易于合成,独特的极化行为和离子电导率

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This work's focus is on the easy synthesis, elucidation of material characteristics and unique polarization behavior of ZnO nanoparticles' decorated r-GO. An optimized molecular-level mixing technique is used to synthesize ZnO decorated r-GO. The composite is found to exhibit high remnant polarization while its ionic conductivity follows the Arrhenius law. The observed polarization behavior is attributed to the lattice parameter disorder in ZnO combined with the presence of an appropriate number of functional groups in the composites. Moreover, a slight increase in r-GO content in the composites can increase the remnant polarization by one order of magnitude (i.e., from 0.062 mu C/cm(2) to 0232 mu C/cm(2)) under the influence of an external electric field (similar to 1.6 kV/cm). Experimental observations clearly indicate that the functionalized r-GO plays an important role (i.e., it facilitates easy dipolar alignment and reorientation) in polarization and increasing the number of stable polarization states with respect to the applied field direction. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作的重点是易于合成,阐明ZnO纳米粒子修饰的r-GO的材料特性和独特的极化行为。一种优化的分子水平混合技术用于合成ZnO装饰的r-GO。发现该复合材料表现出高残留极化,而其离子电导率遵循阿伦尼乌斯定律。观察到的极化行为归因于ZnO中的晶格参数紊乱以及复合物中适当数量的官能团的存在。此外,复合材料中r-GO含量的略微增加可以使残余极化增加一个数量级(即,从0.062μC / cm(2)到0232μC / cm(2))。外部电场(类似于1.6 kV / cm)。实验观察清楚地表明,功能化的r-GO在极化中起着重要作用(即,它促进了容易的偶极对准和重新定向),并且相对于所施加的场方向增加了稳定的极化态的数量。 (C)2016 Elsevier Ltd.保留所有权利。

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