Recent diversification of the telecommunications industry has resulted in the adaptation of optical materials and their associated fabrication technologies for use in the bioanalytical sensor industry. Flame hydrolysis deposited (FHD) planar silica is one such material. Capable of producing high quality films for optical waveguides, the chemical inertness of the deposited silica makes it an ideal substrate from which to fabricate a biological fluorescence sensor. The aim of the work contained in this thesis was to utilise the FHD silica in optical - fluorescence sensors suitable for use at visible and in particular red wavelengths where several fluorophores can be excited, and background fluorescence from the silica is small. New technologi...
Germanium-doped silica deposited by flame-hydrolysis deposition (FHD) is one of the materials most w...
This thesis describes a novel method for the fabrication of monomode planar waveguides, and their ap...
A flagship application of miniaturized chemical optical sensors is the real-time monitoring of cell ...
Recent diversification of the telecommunications industry has resulted in the adaptation of optical ...
Previous research in the field of Flame Hydrolysis Deposition (FHD) of glasses has focused on the pr...
Fluorescence detection is known to be one of the most sensitive among the different optical sensing ...
Femtosecond-laser-written integrated waveguides enable multi-wavelength fluorescence sensing of flow...
With non-invasive properties and high sensitivities, portable optical biosensors are extremely desir...
This thesis is concerned with the fabrication, assessment and application of doped silica waveguides...
In this dissertation, a theoretical description of the operation of absorption and fluorescencebased...
A study of the principles, fabrication and behaviour of a range of optical sensor platforms based on...
The development of a fibre optic oxygen sensor based on the fluorescence quenching of ruthenium comp...
This thesis examines the design and fabrication of a miniaturized optical detection system for sens...
The next major challenges for lab-on-a-chip (LoC) technology are 1) the integration of microfluidics...
With non-invasive properties and high sensitivities, portable optical biosensors are extremely desir...
Germanium-doped silica deposited by flame-hydrolysis deposition (FHD) is one of the materials most w...
This thesis describes a novel method for the fabrication of monomode planar waveguides, and their ap...
A flagship application of miniaturized chemical optical sensors is the real-time monitoring of cell ...
Recent diversification of the telecommunications industry has resulted in the adaptation of optical ...
Previous research in the field of Flame Hydrolysis Deposition (FHD) of glasses has focused on the pr...
Fluorescence detection is known to be one of the most sensitive among the different optical sensing ...
Femtosecond-laser-written integrated waveguides enable multi-wavelength fluorescence sensing of flow...
With non-invasive properties and high sensitivities, portable optical biosensors are extremely desir...
This thesis is concerned with the fabrication, assessment and application of doped silica waveguides...
In this dissertation, a theoretical description of the operation of absorption and fluorescencebased...
A study of the principles, fabrication and behaviour of a range of optical sensor platforms based on...
The development of a fibre optic oxygen sensor based on the fluorescence quenching of ruthenium comp...
This thesis examines the design and fabrication of a miniaturized optical detection system for sens...
The next major challenges for lab-on-a-chip (LoC) technology are 1) the integration of microfluidics...
With non-invasive properties and high sensitivities, portable optical biosensors are extremely desir...
Germanium-doped silica deposited by flame-hydrolysis deposition (FHD) is one of the materials most w...
This thesis describes a novel method for the fabrication of monomode planar waveguides, and their ap...
A flagship application of miniaturized chemical optical sensors is the real-time monitoring of cell ...