Aluminum Nanoholes for Optical Biosensing

被引:13
作者
Angulo Barrios, Carlos [1 ,2 ]
Canalejas-Tejero, Victor [1 ]
Herranz, Sonia [3 ]
Urraca, Javier [3 ,4 ]
Cruz Moreno-Bondi, Maria [3 ]
Avella-Oliver, Miquel [5 ]
Maquieira, Angel [5 ]
Puchades, Rosa [5 ]
机构
[1] Univ Politecn Madrid, Inst Sist Optoelect Microtecnologia, ETSI Telecomun, Ciudad Univ S-N, Madrid 28040, Spain
[2] Univ Politecn Madrid, Dept Tecnologia Fotonica & Bioingn, ETSI Telecomun, Madrid 28040, Spain
[3] Univ Complutense Madrid, Dept Quim Analit, Madrid 28040, Spain
[4] UPM, UCM, Madrid 28040, Spain
[5] Univ Politecn Valencia, Inst Reconocimiento Mol & Desarollo Tecnol, Dept Quim, Valencia 46022, Spain
来源
BIOSENSORS-BASEL | 2015年 / 5卷 / 03期
关键词
aluminum; metal nanoholes; nanohole arrays; surface plasmon resonance; optical biosensing; nanopatterning; transfer printing; molecularly imprinted polymer; photopolymerization;
D O I
10.3390/bios5030417
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
wavelength diameter holes in thin metal layers can exhibit remarkable optical features that make them highly suitable for (bio) sensing applications. Either as efficient light scattering centers for surface plasmon excitation or metal-clad optical waveguides, they are able to form strongly localized optical fields that can effectively interact with biomolecules and/or nanoparticles on the nanoscale. As the metal of choice, aluminum exhibits good optical and electrical properties, is easy to manufacture and process and, unlike gold and silver, its low cost makes it very promising for commercial applications. However, aluminum has been scarcely used for biosensing purposes due to corrosion and pitting issues. In this short review, we show our recent achievements on aluminum nanohole platforms for (bio) sensing. These include a method to circumvent aluminum degradation-which has been successfully applied to the demonstration of aluminum nanohole array (NHA) immunosensors based on both, glass and polycarbonate compact discs supports-the use of aluminum nanoholes operating as optical waveguides for synthesizing submicron-sized molecularly imprinted polymers by local photopolymerization, and a technique for fabricating transferable aluminum NHAs onto flexible pressure-sensitive adhesive tapes, which could facilitate the development of a wearable technology based on aluminum NHAs.
引用
收藏
页码:417 / 431
页数:15
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