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The vibrational properties of one-dimensional ZnO:Ce nanostructures

机译:一维ZnO:Ce纳米结构的振动特性

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Different morphological one-dimensional ZnO:Ce nanostructures were synthesized on a large scale. The microstructures and vibrational properties were investigated by x-ray diffraction, electron microscopy, Raman spectroscopy, and infrared spectroscopy. The results show that Ce can effectively control the growth of ZnO nanostructures. The change of the morphology and local structure of ZnO under the influence of Ce results in the variation of vibrational properties. In Raman spectra of doped samples, some classical modes, such as A_1 and E_1 modes, disappear, and two anomalous modes at 527 and 667 cm~(-1) are observed, whose intensity decreases with the increase of synthesis temperature. In infrared spectra, some surface phonon modes appear. Compared with those of the undoped sample, all the normal modes observed in the Ce-doped samples blueshift, and the extent of the blueshift decreases with increasing synthesis temperature in the Raman and infrared spectra.
机译:大规模合成了不同形态的一维ZnO:Ce纳米结构。通过X射线衍射,电子显微镜,拉曼光谱和红外光谱研究了微观结构和振动特性。结果表明,铈可以有效地控制ZnO纳米结构的生长。 Ce的影响下ZnO的形貌和局部结构的变化导致振动特性的变化。在掺杂样品的拉曼光谱中,一些经典模式,如A_1和E_1模式消失,在527和667 cm〜(-1)处观察到两个异常模式,其强度随合成温度的升高而降低。在红外光谱中,会出现一些表面声子模式。与未掺杂样品相比,在铈掺杂样品中观察到的所有正常模式都发生蓝移,并且随着拉曼光谱和红外光谱中合成温度的升高,蓝移的程度减小。

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