Traditionally, optical titrations of inorganic ions are based on a rapid and visible color change at the end point with water-soluble organic dyes as indicators. Adequate selectivity is required for both the indicator and the complexing agent, which is often limited. We present here alternative, heterogeneous ionophore-based ion-selective nanospheres as indicators and chelators for optical titrations. The indicating nanospheres rely on a weaker extraction of the analyte of interest by ion-exchange, owing to the additional incorporation of a lipophilic pH indicator in the nanosphere core. Ca2+ titration was demonstrated as a proof-of-concept. Both the chelating and the indicating nanospheres showed good selectivity and a wide working pH rang...
We present here anion-exchange nanospheres as novel titration reagents for anions. The nanospheres c...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
The earth is a planet of water where diverse living organisms have flourished and gone extinct. In ...
Traditionally, optical titrations of inorganic ions are based on a rapid and visible color change at...
For half a century, complexometric titrations of metal ions have been performed with water-soluble c...
For half a century, complexometric titrations of metal ions have been performed with water-soluble c...
This thesis is focused on the development of a new generation of titration reagents based on ionopho...
Complexometric titrations rely on a drastic change of the pM value at the equivalence point with a w...
Chelators and end point indicators are the most important parts of complexometric titrations. The mo...
While the titrimetric assay is one of the most precise analytical techniques available, only a limit...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Design strategies for small molecular probes lay the foundation of numerous synthetic chemosensors. ...
We present here anion-exchange nanospheres as novel titration reagents for anions. The nanospheres c...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
The earth is a planet of water where diverse living organisms have flourished and gone extinct. In ...
Traditionally, optical titrations of inorganic ions are based on a rapid and visible color change at...
For half a century, complexometric titrations of metal ions have been performed with water-soluble c...
For half a century, complexometric titrations of metal ions have been performed with water-soluble c...
This thesis is focused on the development of a new generation of titration reagents based on ionopho...
Complexometric titrations rely on a drastic change of the pM value at the equivalence point with a w...
Chelators and end point indicators are the most important parts of complexometric titrations. The mo...
While the titrimetric assay is one of the most precise analytical techniques available, only a limit...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Design strategies for small molecular probes lay the foundation of numerous synthetic chemosensors. ...
We present here anion-exchange nanospheres as novel titration reagents for anions. The nanospheres c...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
The earth is a planet of water where diverse living organisms have flourished and gone extinct. In ...