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[不同退火条件对纳米多孔氧化铝薄膜光致发光的影响]

[Effects of different annealing conditions on the photoluminescence of nanoporous alumina film].

作者信息

Xie Ning, Ma Kai-Di, Shen Yi-Fan, Wang Qian

机构信息

School of Physics Science Technology Xinjiang University Urumq, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Dec;33(12):3197-201.

Abstract

The nanoporous alumina films were prepared by two-step anodic oxidation in 0.5 mol L-1 oxalic acid electrolyte at 40 V. Photoluminescence (PL) of nanoporous alumina films was investigated under different annealing atmosphere and different temperature. The authors got three results about the PL measurements. In the same annealing atmosphere, when the annealling temperature T< or =600 degreeC, the intensity of the PL peak increases with elevated annealing temperature and reaches a maximum value at 500 degreeC, but the intensity decreases with a further increase in the annealing temperature, and the PL peak intensity of samples increases with the increase in the annealing temperature when the annealling temperature T> or =800 degreeC. In the different annealling atmosphere, the change in the photoluminescence peak position for nanoporous alumina films with the increase in the annealing temperature is different: With the increase in the annealling temperature, the PL peak position for the samples annealed in air atmosphere is blue shifted, while the PL peak position for the samples annealed in vacuum atmosphere will not change. The PL spectra of nanoporous alumina films annealed at 1100 degreeC in air atmosphere can be de-convoluted by three Gaussian components at an excitation wavelength of 350 nm, with bands centered at 387, 410 and 439 nm, respectively. These results suggest that there might be three luminescence centers for the PL of annealed alumina films. At the same annealling temperature, the PL peak intensity of samples annealed in air atmosphere is stronger than that annealed in the vacuum. Based on the experimental results and the X-ray dispersive energy spectrum (EDS) combined with infrared reflect spectra, the luminescence mechanisms of nanoporous alumina films are discussed. There are three luminescence centers in the annealed nanoporous alumina films, which originate from the F center, F+ center and the center associated with the oxalic impurities. The effects of different annealing conditions on the photoluminescence of nanoporous alumina film are reasonably explained.

摘要

通过在40V的0.5mol/L草酸电解液中进行两步阳极氧化制备了纳米多孔氧化铝薄膜。研究了纳米多孔氧化铝薄膜在不同退火气氛和不同温度下的光致发光(PL)特性。作者得到了关于PL测量的三个结果。在相同的退火气氛中,当退火温度T≤600℃时,PL峰强度随退火温度升高而增加,并在500℃时达到最大值,但随着退火温度进一步升高强度降低;当退火温度T≥800℃时,样品的PL峰强度随退火温度升高而增加。在不同的退火气氛中,纳米多孔氧化铝薄膜的光致发光峰位置随退火温度升高的变化不同:随着退火温度升高,在空气气氛中退火的样品的PL峰位置发生蓝移,而在真空气氛中退火的样品的PL峰位置不变。在350nm激发波长下,在空气气氛中1100℃退火的纳米多孔氧化铝薄膜的PL光谱可由三个高斯分量解卷积,其谱带分别位于387、410和439nm处。这些结果表明,退火氧化铝薄膜的PL可能存在三个发光中心。在相同的退火温度下,在空气气氛中退火的样品的PL峰强度比在真空中退火的样品更强。基于实验结果以及X射线色散能谱(EDS)结合红外反射光谱,讨论了纳米多孔氧化铝薄膜的发光机制。退火后的纳米多孔氧化铝薄膜中有三个发光中心,分别源于F中心、F+中心和与草酸杂质相关的中心。合理地解释了不同退火条件对纳米多孔氧化铝薄膜光致发光的影响。

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