Białek Ewelina, Włodarski Maksymilian, Norek Małgorzata
Faculty of Advanced Technologies and Chemistry, Institute of Materials Science and Engineering, Military University of Technology, Str. gen Sylwestra Kaliskiego 2, 00-908 Warsaw, Poland.
Institute of Optoelectronics, Military University of Technology, Str. gen. Sylwestra Kaliskiego 2, 00-908 Warsaw, Poland.
Materials (Basel). 2020 Dec 9;13(24):5622. doi: 10.3390/ma13245622.
In this work, the influence of various electrochemical parameters on the production of porous anodic alumina (PAA)-based DBRs (distributed Bragg reflector) during high-temperature-pulse-anodization was studied. It was observed that lowering the temperature from 30 to 27 °C brings about radical changes in the optical performance of the DBRs. The multilayered PAA fabricated at 27 °C did not show optical characteristics typical for DBR. The DBR performance was further tuned at 30 °C. The current recovery () after application of subsequent U pulses started to stabilize upon decreasing high (U) and low (U) voltage pulses, which was reflected in a smaller difference between initial and final thickness of alternating d and d segments (formed under U and U, respectively) and a better DBR performance. Shortening U pulse duration resulted in a progressive shift of photonic stopbands (PSBs) towards the blue part of the spectrum while keeping intensive and symmetric PSBs in the NIR-MIR range. Despite the obvious improvement of the DBR performance by modulation of electrochemical parameters, the problem with regarding full control over the homogeneous formation of d+d pairs remains. Solving this problem will certainly lead to the production of affordable and efficient PAA-based photonic crystals with tunable photonic properties in the NIR-MIR region.
在这项工作中,研究了高温脉冲阳极氧化过程中各种电化学参数对基于多孔阳极氧化铝(PAA)的分布布拉格反射器(DBR)制备的影响。观察到温度从30℃降至27℃会使DBR的光学性能发生根本性变化。在27℃制备的多层PAA未表现出DBR典型的光学特性。DBR性能在30℃时进一步调整。施加后续U脉冲后电流恢复()在降低高(U)和低(U)电压脉冲时开始稳定,这反映在交替的d和d段(分别在U和U下形成)的初始厚度和最终厚度之间的差异较小以及更好的DBR性能上。缩短U脉冲持续时间会导致光子禁带(PSB)逐渐向光谱的蓝色部分移动,同时在近红外-中红外范围内保持强烈且对称的PSB。尽管通过调节电化学参数DBR性能有明显改善,但关于完全控制d+d对均匀形成的问题仍然存在。解决这个问题肯定会导致生产出在近红外-中红外区域具有可调光子特性的经济高效的基于PAA的光子晶体。