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Growth of raspberry-, prism- and flower-like ZnO particles using template-free low-temperature hydrothermal method and their application as humidity sensors

机译:无模板低温水热法生长覆盆子,棱柱形和花状ZnO颗粒及其在湿度传感器中的应用

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Zinc oxide particles with different morphologies were prepared by hydrothermal method at 60–90 °C. The structure formation was controlled by the addition rate and temperature of hydrolyzing agent, while the particles size (10 nm–2.5 μm) was influenced by the preparation (hydrothermal) temperature. Scanning electron microscopy studies showed that raspberry-, prism- and flower-like ZnO particles were prepared, whose average size decreased with increasing reaction temperature. X-ray diffraction investigations confirmed that ZnO particles with hexagonal crystal structure formed in all syntheses. The raspberry-, prism- and flower-like ZnO particles showed a weak UV-emission in the range of 390–395 nm and strong visible emission with a maximum at 586, 593 and 598 nm, respectively. Morphology effect on electrical and water vapour sensing properties of ZnO samples was investigated by impedance spectroscopy and quartz crystal microbalance, respectively. The absolute impedance of raspberry-, prism- and flower-like ZnO particles was found to be strong dependent on the morphology. Space-charge-limited conductivity transport mechanism was proved by the oscillatory behaviour of impedance. Humidity sensor tests also revealed morphology and specific surface area dependency on the sensitivity and water vapour adsorption property.
机译:通过水热法在60–90°C下制备了不同形态的氧化锌颗粒。结构的形成受水解剂的添加速率和温度控制,而粒径(10 nm–2.5μm)受制备(水热)温度影响。扫描电子显微镜研究表明,制备了覆盆子状,棱柱状和花状的ZnO颗粒,其平均尺寸随反应温度的升高而减小。 X射线衍射研究证实,在所有合成过程中均形成了具有六方晶体结构的ZnO颗粒。覆盆子状,棱柱状和花状的ZnO颗粒在390-395 nm范围内显示出弱的紫外线发射,并且在586、593和598 nm处具有最大的可见光发射。分别通过阻抗谱和石英晶体微量天平研究了形态对ZnO样品的电学和水蒸气感测特性的影响。发现树莓状,棱柱状和花状ZnO颗粒的绝对阻抗强烈依赖于形态。通过阻抗的振荡行为证明了空间电荷受限的电导率传输机制。湿度传感器测试还揭示了形态和比表面积对灵敏度和水蒸气吸附特性的依赖性。

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