Domagalski Jakub T, Xifre-Perez Elisabet, Marsal Lluis F
Departament d'Enginyeria Electrònica, Elèctrica i Automàtica, Universitat Rovira i Virgili, Avinguda dels Països Catalans 26, 43007 Tarragona, Spain.
Nanomaterials (Basel). 2021 Feb 8;11(2):430. doi: 10.3390/nano11020430.
The development of aluminum anodization technology features many stages. With the story stretching for almost a century, rather straightforward-from current perspective-technology, raised into an iconic nanofabrication technique. The intrinsic properties of alumina porous structures constitute the vast utility in distinct fields. Nanoporous anodic alumina can be a starting point for: Templates, photonic structures, membranes, drug delivery platforms or nanoparticles, and more. Current state of the art would not be possible without decades of consecutive findings, during which, step by step, the technique was more understood. This review aims at providing an update regarding recent discoveries-improvements in the fabrication technology, a deeper understanding of the process, and a practical application of the material-providing a narrative supported with a proper background.
铝阳极氧化技术的发展历经多个阶段。这段历史绵延近一个世纪,从当前的视角来看,这项技术相当简单,却发展成为了一种标志性的纳米制造技术。氧化铝多孔结构的固有特性在不同领域有着广泛的用途。纳米多孔阳极氧化铝可作为以下方面的起点:模板、光子结构、膜、药物递送平台或纳米颗粒等等。如果没有数十年来的一系列连续发现,就不可能有目前的技术水平,在此期间,人们对该技术的理解也在逐步加深。本综述旨在提供有关最新发现的最新信息——制造技术的改进、对该过程更深入的理解以及该材料的实际应用——并辅以适当的背景进行阐述。