We report a novel dual-lumophore oxygen sensor incorporating two lumophores: (1) the platinum(II) cyclometalated complex of the N;C;N-coordinating ligand 1,3,5-tri-(2-pyridyl)benzene and (2) Platinum octaethylporphyrin, which differ in both their emission colours and oxygen sensitivities. Sensor response is given by a dramatic change in emission colour, from red to green at different oxygen concentrations, due to the complete or partial luminescence quenching of one or both of the sensing elements. This approach enables the simple and rapid evaluation of the O2 concentration present, making it applicable to commercial technologies such as modified atmosphere packaging
AbstractNucleophilic substitution of the labile para-fluorine atoms of 2,3,4,5,6-pentafluorophenyl g...
Summary This thesis reports on the design of new types of planar optical sensors (often referred to ...
An optical oxygen sensor system based on the process of fluorescence quenching is reported. The devi...
Ratiometric sensing is the simplest and most accurate method for measuring O2. Our sensors use an ox...
A triethoxysilyl-functionalized cyclometallated platinum(II) complex Pt(MeOPhC∧N∧N)X (where MeOPhCN∧...
Optical chemical sensors enlarge the definition of a classical chemical sensor; they present results...
The determination of oxygen concentration is important in many areas of industry, medicine and the e...
The monitoring of the presence of oxygen in a variety of media has become of increasing interest, es...
An optical dual sensor for oxygen and temperature is presented that is highly oxygen sensitive and c...
A new dual luminescent sensitive paint for barometric pressure and temperature (T) is presented. The...
The goal of this project was to design an optical sensor for oxygen. One type of system suitable for...
A novel kind of composite material is presented that contains two indicators incorporated into a sin...
A chromatic sensor has been designed for the detection of oxygen in package headspace. The sensor is...
A doubly pyrene-grafted bis-cyclometallated iridium complex with engineered electronically excited s...
Turned off by oxygen: Luminescent upconverting nanoparticles (UCNPs) of the type NaYF4:Yb,Tm are emp...
AbstractNucleophilic substitution of the labile para-fluorine atoms of 2,3,4,5,6-pentafluorophenyl g...
Summary This thesis reports on the design of new types of planar optical sensors (often referred to ...
An optical oxygen sensor system based on the process of fluorescence quenching is reported. The devi...
Ratiometric sensing is the simplest and most accurate method for measuring O2. Our sensors use an ox...
A triethoxysilyl-functionalized cyclometallated platinum(II) complex Pt(MeOPhC∧N∧N)X (where MeOPhCN∧...
Optical chemical sensors enlarge the definition of a classical chemical sensor; they present results...
The determination of oxygen concentration is important in many areas of industry, medicine and the e...
The monitoring of the presence of oxygen in a variety of media has become of increasing interest, es...
An optical dual sensor for oxygen and temperature is presented that is highly oxygen sensitive and c...
A new dual luminescent sensitive paint for barometric pressure and temperature (T) is presented. The...
The goal of this project was to design an optical sensor for oxygen. One type of system suitable for...
A novel kind of composite material is presented that contains two indicators incorporated into a sin...
A chromatic sensor has been designed for the detection of oxygen in package headspace. The sensor is...
A doubly pyrene-grafted bis-cyclometallated iridium complex with engineered electronically excited s...
Turned off by oxygen: Luminescent upconverting nanoparticles (UCNPs) of the type NaYF4:Yb,Tm are emp...
AbstractNucleophilic substitution of the labile para-fluorine atoms of 2,3,4,5,6-pentafluorophenyl g...
Summary This thesis reports on the design of new types of planar optical sensors (often referred to ...
An optical oxygen sensor system based on the process of fluorescence quenching is reported. The devi...