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Template-free hydro thermal synthesis of ZnO microrods for gas sensor application

机译:用于气体传感器的ZnO微棒的无模板水热合成

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摘要

Zinc oxide microrods with controlled diameter were prepared without the addition of template and additive by a simple hydrothermal route only using Zn(CH3COO)2·2H2O as a precursor. The products were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and electron diffraction (ED). The crystal structure of prepared ZnO microrods is hexagonal phase polycrystalline with zincite structure. With the increase of the precursor concentration from 0.05 M to 0.6 M, the diameter of the ZnO microrods increased from 1 u.m to 5 u.m. A localized oriented attachment mechanism was prepared to account for the formation of ZnO microrods. The gas-sensing performance experiments indicated that the prepared ZnO microrods exhibited highly sensitive, selective gas-sensing properties, and good stability to acetone vapor. The response and recovery time of ZnO-based gas sensor to 100 ppm acetone vapor are 12 s and 18 s, respectively. The mechanism of the ZnO-based sensor was investigated.
机译:仅使用Zn(CH3COO)2·2H2O为前体,通过简单的水热途径制备了直径受控的氧化锌微棒,无需添加模板和添加剂。通过X射线衍射(XRD),扫描电子显微镜(SEM),能量色散谱(EDS)和电子衍射(ED)表征产物。制备的ZnO微棒的晶体结构为具有锌铁矿结构的六方相多晶。随着前体浓度从0.05 M增加到0.6 M,ZnO微棒的直径从1 µm增加到5 µm。准备了局部定向的附着机制,以解释ZnO微棒的形成。气敏性能实验表明,所制备的ZnO微棒表现出高度灵敏,选择性的气敏特性,并对丙酮蒸气具有良好的稳定性。 ZnO基气体传感器对100 ppm丙酮蒸气的响应时间和恢复时间分别为12 s和18 s。研究了基于ZnO的传感器的机理。

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