Kumeria Tushar, Losic Dusan
Ian Wark Research Institute, University of South Australia, Mawson Lakes, Adelaide, South Australia, 5095, Australia.
Nanoscale Res Lett. 2012 Jan 26;7(1):88. doi: 10.1186/1556-276X-7-88.
A study of reflective interference spectroscopy [RIfS] properties of nanoporous anodic aluminium oxide [AAO] with the aim to develop a reliable substrate for label-free optical biosensing is presented. The influence of structural parameters of AAO including pore diameters, inter-pore distance, pore length, and surface modification by deposition of Au, Ag, Cr, Pt, Ni, and TiO2 on the RIfS signal (Fabry-Perot fringe) was explored. AAO with controlled pore dimensions was prepared by electrochemical anodization of aluminium using 0.3 M oxalic acid at different voltages (30 to 70 V) and anodization times (10 to 60 min). Results show the strong influence of pore structures and surface modifications on the interference signal and indicate the importance of optimisation of AAO pore structures for RIfS sensing. The pore length/pore diameter aspect ratio of AAO was identified as a suitable parameter to tune interferometric properties of AAO. Finally, the application of AAO with optimised pore structures for sensing of a surface binding reaction of alkanethiols (mercaptoundecanoic acid) on gold surface is demonstrated.
本文介绍了一项关于纳米多孔阳极氧化铝(AAO)的反射干涉光谱(RIfS)特性的研究,旨在开发一种用于无标记光学生物传感的可靠基底。研究了AAO的结构参数(包括孔径、孔间距、孔长)以及通过沉积Au、Ag、Cr、Pt、Ni和TiO₂进行的表面改性对RIfS信号(法布里 - 珀罗条纹)的影响。使用0.3 M草酸在不同电压(30至70 V)和阳极氧化时间(10至60分钟)下通过铝的电化学阳极氧化制备了具有可控孔径尺寸的AAO。结果表明孔结构和表面改性对干涉信号有强烈影响,并表明优化AAO孔结构对于RIfS传感的重要性。AAO的孔长/孔径长宽比被确定为调节AAO干涉特性的合适参数。最后,展示了具有优化孔结构的AAO在检测金表面上链烷硫醇(巯基十一烷酸)的表面结合反应中的应用。