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Investigations on growth and hydrogen gas sensing property of ZnO nanowires prepared by hydrothermal growth

机译:水热生长制备ZnO纳米线的生长及其对氢气的传感特性研究

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Very narrow ZnO nanowires are synthesized on the sputtered ZnO seed layer by hydrothermal growth method. Varying the growth parameters we can obtain several features of ZnO nanowire. The nanowires with a diameter of about 15 nm and with a length longer than 5 ¿m are grown, which are much narrower than ZnO nanowires grown by chemical vapor deposition. The underlying ZnO seed layer enhanced the nucleation of ZnO nanowire during the followed ZnO synthesis by hydrothermal growth but without the seed layer, ZnO grown randomly as a rod shape. The molar ratio of the source is critical to the shape of the ZnO nanowire. Crystal orientation of ZnO nanowire is investigated by X-ray ¿-2¿ diffraction and microstructure of the ZnO nanowire is examined by transmission electron microscopy. Hydrogen-gas sensing property is measured and compared from the synthesized ZnO nanowires.
机译:通过水热生长法在溅射的ZnO种子层上合成了非常窄的ZnO纳米线。改变生长参数,我们可以获得ZnO纳米线的几个特征。纳米线的直径大约为15 nm,长度大于5μm,比通过化学气相沉积法生长的ZnO纳米线要窄得多。在随后的水热生长合成ZnO的过程中,下面的ZnO种子层增强了ZnO纳米线的成核作用,但是如果没有种子层,则ZnO会随机生长为棒状。源的摩尔比对ZnO纳米线的形状至关重要。 ZnO纳米线的晶体取向是通过X射线â-2衍射研究的,而ZnO纳米线的微观结构是通过透射电子显微镜检查的。从合成的ZnO纳米线中测量并比较氢气的感测特性。

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