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Electrical properties of Mn_3O_4 nanorods developed through aluminum anodic membranes

机译:通过铝阳极膜开发的MN_3O_4纳米棒的电气性能

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Nano-scaled materials have attained extensive interest because these materials are appropriate for the investigation of some ultimate aspects of ordered phenomena under reduced dimensions, and thus possessing novel promising applications. We reported the synthesis of Mn_3O_4 nanoparticles via hydrothermal process. Later, we developed nanorods using aluminum oxide membrane (AAO) with the help of vacuum infiltration. This design is carried out to enhance the electrical properties of Mn_3O_4 nanoparticles, which already have potential application in storage devices. AC electrical conductivity of Mn_3O_4-filled AAO membrane as a function of frequency and temperature is studied. AC electrical measurements are carried out at various temperatures ranging from 30-80°C by the parallel plate capacitor method. There is a small increase in the electrical conductivity of the nanoparticle at low frequency region. However, at high frequencies especially in the MHz region, there is an abrupt increase in the conductivity especially at 40°C. X-Ray Diffraction (XRD) and Field Emission Scanning Electron Microscopy (FESEM) confirmed the formation of nanorods.
机译:纳米缩放材料已经实现了广泛的利益,因为这些材料适用于调查减少尺寸下有序现象的一些最终方面,从而具有新颖的有前途的应用。我们报道了通过水热法的合成Mn_3O_4纳米颗粒。后来,我们在真空浸润的帮助下使用氧化铝膜(AAO)开发了纳米棒。进行该设计以增强Mn_3O_4纳米颗粒的电特性,该纳米颗粒已经在存储装置中具有潜在的应用。研究了Mn_3O_4填充AAO膜作为频率和温度函数的AC电导率。 AC电测量在由平行板电容器法范围为30-80℃的各种温度下进行。在低频区域的纳米颗粒的导电性小幅增加。然而,在特别是在MHz区域的高频率下,电导率突然增加,特别是在40℃下。 X射线衍射(XRD)和场发射扫描电子显微镜(FESEM)证实了纳米棒的形成。

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