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首页> 外文期刊>Journal of Materials Science >Structure and gas sensing properties of nanocrystalline Fe-doped ZnO films prepared by spin coating method
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Structure and gas sensing properties of nanocrystalline Fe-doped ZnO films prepared by spin coating method

机译:旋涂法制备掺铁纳米ZnO薄膜的结构和气敏特性

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Nanocrystalline Fe-doped ZnO films were obtained by spin coating, using zinc acetate and iron acetate as starting materials and N,N-dimethylformamide as solvent. Characteristic XRD patterns indicate that the films under study are single phase with the ZnO-like wurtzite structure. There are not any secondary phases and Fe~(2+) as well as Fe~(3+) substitutes for Zn ~(2+) of ZnO host. Atomic force microscopy analysis revealed that the studied films are characterized by high-density columnar structure and the incorporation of Fe atoms into the ZnO lattice modified the surface morphology. The sensitivity, at three different gases, was investigated and it was observed that acetone is the test gas that produces the most significant changes in the electrical resistance of all studied samples. Experimental results indicate that the optimum operating temperature increases for Fe-doped ZnO films by comparison with the undoped one. Also, the values of sensitivity were found to depend on the dopant concentration in ZnO films.
机译:以醋酸锌和醋酸铁为起始原料,以N,N-二甲基甲酰胺为溶剂,通过旋涂法获得了掺Fe的纳米晶ZnO薄膜。特征X射线衍射图表明所研究的膜是具有ZnO样纤锌矿结构的单相膜。没有任何第二相,并且Fe〜(2+)和Fe〜(3+)可以替代ZnO主体的Zn〜(2+)。原子力显微镜分析表明,所研究的薄膜具有高密度的柱状结构,并且Fe原子掺入ZnO晶格中改变了表面形貌。对三种不同气体的灵敏度进行了研究,发现丙酮是在所有研究样品的电阻中产生最显着变化的测试气体。实验结果表明,与未掺杂的相比,掺铁的ZnO薄膜的最佳工作温度升高。另外,发现灵敏度值取决于ZnO薄膜中的掺杂剂浓度。

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