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首页> 外文期刊>The journal of physics and chemistry of solids >Tuning the optical properties of nanoporous anodic alumina photonic crystals by control of allowed voltage range via mixed acid concentration
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Tuning the optical properties of nanoporous anodic alumina photonic crystals by control of allowed voltage range via mixed acid concentration

机译:通过混合酸浓度控制允许的电压范围调节纳米孔阳极氧化铝光子光子的光学性质

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摘要

This study investigates the tunable fabrication of photonic crystals (PCs) based on nanoporous anodic alumina (NAA) templates through modification of nanopore diameter, affecting the PCs optical response. This was realized by controlling phosphoric acid concentration (C-ph) and anodization current density. This approach along with chemical etching offers the opportunity to adjust optical band gap in a wide range of wavelengths (from about 400 to 1100 nm). To this end, the effect of C-ph, on current density and threshold voltage was investigated. To analyze formation mechanism of resulting multilayers and optimize their optical characteristics, the potential ratio, span, cycles and charge density were examined, thereby providing a band gap as narrow as 6 nm. The sensing analysis revealed that the modified multilayer shows enhanced sensitivity to the changes of effective media inside the nanopores. These findings provide insights into the development of both optical sensors and optoelectronic nanodevices based on the NAA-based PCs.
机译:本研究通过改变纳米孔直径来研究基于纳米多孔阳极氧化铝(NAA)模板的光子晶体(PCS)的可调谐制造,影响PCS光学响应。这是通过控制磷酸浓度(C-PH)和阳极氧化电流密度来实现。这种方法以及化学蚀刻提供了在宽范围波长(约400至1100nm)中调节光带间隙的机会。为此,研究了C-pH的效果,对电流密度和阈值电压进行了影响。为了分析所得多层的形成机制并优化它们的光学特性,检查电位比,跨度,循环和充电密度,从而提供窄至6nm的带隙。感测分析显示,改性多层​​显示出对纳米孔内的有效介质的变化的增强敏感性。这些发现提供了基于NAA的PC的光学传感器和光电纳米模型的开发。

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