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The effect of the voltage waveform on the microstructure and optical properties of porous anodic alumina photonic crystals

机译:电压波形对多孔阳极氧化铝光子晶体微观结构和光学性能的影响

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Porous anodic alumina photonic crystals (PAA-PhCs) with brilliant colours were successfully fabricated by pulse anodization of aluminium in an oxalic acid electrolyte. The influence of the voltage waveform on the microstructure of the PAA-PhCs was investigated by adjusting the anodization period, anodization amplitude, and anodization offset. Here, we report a simplified method for compensation of the photonic band gap (PBG) drift using AC waveforms instead of the periodic length-controlled method. Scanning electron microscopy (SEM) results showed that the layer thickness of the PAA-PhC prepared by an AC pulse was gradually reduced from 360 nm to 290 non, which was completely different from a previous report showing that the layer thickness of a sample prepared by a DC pulse remained unchanged. In addition, the effect of chemical corrosion in a phosphoric acid solution on the microstructures of the PAA-PhCs was analysed by comparative experiments. PBG drift caused by minor defects in the nanostructure during the anodization process could also be compensated for by adjusting the anodizing time and corrosion time. Our approach may help to broaden the potential applications of and provide important guidance for photonic crystal display and new devices.
机译:通过在草酸电解液中对铝进行脉冲阳极氧化,成功制备了具有鲜艳色彩的多孔阳极氧化铝光子晶体(PAA-PhC)。通过调节阳极氧化周期,阳极氧化幅度和阳极氧化偏移量,研究了电压波形对PAA-PhCs微观结构的影响。在这里,我们报告了一种使用交流波形代替周期长度控制方法来补偿光子带隙(PBG)漂移的简化方法。扫描电子显微镜(SEM)结果表明,通过交流脉冲制备的PAA-PhC的层厚度从360 nm逐渐减小到290 non,这与以前的报告完全不同,后者表明通过直流脉冲保持不变。此外,通过对比实验分析了磷酸溶液中化学腐蚀对PAA-PhCs微观结构的影响。在阳极氧化过程中,由纳米结构中的微小缺陷引起的PBG漂移也可以通过调整阳极氧化时间和腐蚀时间来补偿。我们的方法可能有助于拓宽光子晶体显示器和新设备的潜在应用并提供重要指导。

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