Lim Siew Yee, Law Cheryl Suwen, Marsal Lluís F, Santos Abel
School of Chemical Engineering, The University of Adelaide, 5005, Adelaide, Australia.
Institute for Photonics and Advanced Sensing (IPAS), The University of Adelaide, 5005, Adelaide, Australia.
Sci Rep. 2018 Jun 21;8(1):9455. doi: 10.1038/s41598-018-27775-6.
In this study, we present an advanced nanofabrication approach, so-called 'heterogeneous pulse anodization' (HPA), in which galvanostatic stepwise and apodized sinusoidal pulse anodizations are combined in a single process. This novel anodization method enables the precise optical engineering of the characteristic photonic stopbands (PSBs) of nanoporous anodic alumina photonic crystals (NAA-PCs). The resulting structures are hybrid PCs (Hy-NAA-PCs) composed of distributed Bragg reflectors (DBRs) and apodized gradient-index filters (APO-GIFs) embedded within the same PC structure. The modification of various anodization parameters such as anodization period, relative and total anodization time, structural arrangement of PCs within Hy-NAA-PCs, and pore widening time allows the fine-tuning of the PSBs' features (i.e. number, position and bandwidth of central wavelength) across the spectral regions. The effects of these fabrication parameters are systematically assessed, revealing that the positions of the characteristic transmission bands of Hy-NAA-PCs are highly controllable. Our study provides a comprehensive rationale towards the development of unique Hy-NAA-PCs with controllable optical properties, which could open new opportunities for a plethora of applications.
在本研究中,我们提出了一种先进的纳米制造方法,即所谓的“异质脉冲阳极氧化”(HPA),该方法将恒电流逐步和变迹正弦脉冲阳极氧化结合在一个过程中。这种新颖的阳极氧化方法能够对纳米多孔阳极氧化铝光子晶体(NAA-PCs)的特征光子带隙(PSBs)进行精确的光学工程设计。所得结构是由分布式布拉格反射器(DBRs)和嵌入同一光子晶体结构内的变迹梯度折射率滤波器(APO-GIFs)组成的混合光子晶体(Hy-NAA-PCs)。通过改变各种阳极氧化参数,如阳极氧化周期、相对和总阳极氧化时间、Hy-NAA-PCs内光子晶体的结构排列以及孔径扩大时间,可以在整个光谱区域对PSBs的特征(即中心波长的数量、位置和带宽)进行微调。系统评估了这些制造参数的影响,结果表明Hy-NAA-PCs特征透射带的位置具有高度可控性。我们的研究为开发具有可控光学性质的独特Hy-NAA-PCs提供了全面的理论依据,这可能为众多应用带来新的机遇。