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 impo...
Nanoporous anodic aluminum oxide (AAO) has become one of the most popular materials with potential a...
Herein, we present a comparative study about the sensing performance of optical biosensors based on ...
In the present study, we have determined the intrinsic refractive index of anodic aluminium oxide, w...
Optimisation of reflective interferometric properties of nanoporous aluminium oxide (AAO) fabricated...
The concept of a microfluidic biosensing device based on reflective interferometric spectroscopy (RI...
Electrochemical anodization of pure aluminum enables the growth of highly ordered nanoporous anodic ...
The design of a microfluidic nanoporous reflective interferometric (RIfS) sensor is presented. The k...
Here, we present a systematic study about the effect of the pore length and its diameter on the spec...
This work presents the use of nanoporous anodic aluminium oxide [AAO] for reflective interferometric...
Electrochemical anodization of pure aluminum enables the growth of highly ordered nanoporous anodic ...
Optical sensors play an important role and are employed for more application in today’s lives than e...
We explore new approaches to engineering the surface chemistry of interferometric sensing platforms ...
Nanoporous anodic alumina (NAA) has become one of the most promising nanomaterials in optical biosen...
Herein, we present an innovative strategy for optimizing hierarchical structures of nanoporous anodi...
Abstract: An electrochemically synthesised porous anodic aluminium oxide (pAAO) layer has been analy...
Nanoporous anodic aluminum oxide (AAO) has become one of the most popular materials with potential a...
Herein, we present a comparative study about the sensing performance of optical biosensors based on ...
In the present study, we have determined the intrinsic refractive index of anodic aluminium oxide, w...
Optimisation of reflective interferometric properties of nanoporous aluminium oxide (AAO) fabricated...
The concept of a microfluidic biosensing device based on reflective interferometric spectroscopy (RI...
Electrochemical anodization of pure aluminum enables the growth of highly ordered nanoporous anodic ...
The design of a microfluidic nanoporous reflective interferometric (RIfS) sensor is presented. The k...
Here, we present a systematic study about the effect of the pore length and its diameter on the spec...
This work presents the use of nanoporous anodic aluminium oxide [AAO] for reflective interferometric...
Electrochemical anodization of pure aluminum enables the growth of highly ordered nanoporous anodic ...
Optical sensors play an important role and are employed for more application in today’s lives than e...
We explore new approaches to engineering the surface chemistry of interferometric sensing platforms ...
Nanoporous anodic alumina (NAA) has become one of the most promising nanomaterials in optical biosen...
Herein, we present an innovative strategy for optimizing hierarchical structures of nanoporous anodi...
Abstract: An electrochemically synthesised porous anodic aluminium oxide (pAAO) layer has been analy...
Nanoporous anodic aluminum oxide (AAO) has become one of the most popular materials with potential a...
Herein, we present a comparative study about the sensing performance of optical biosensors based on ...
In the present study, we have determined the intrinsic refractive index of anodic aluminium oxide, w...