Potentiometric sensors require the implementation of conducting wires for signal transduction, but this is impractical for the readout of individual nanoparticles. It is here demonstrated for the first time that the potentiometric response of ion-selective nanospheres can be observed with voltage-sensitive dyes, thereby converting nanoscale electrochemical signals into an optical readout. No reference electrode is needed since the readout is by fluorescence. The results strongly support the potentiometric origin for the fluorescence response. The ionselective nanospheres exhibit excellent selectivity and respond to ion concentration changes independent of sample pH, providing a new platform of potentiometric nanosensors with optical readou...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
The sensing mechanism of fluorescent ionselective nanosensors incorporating solvatochromic dyes (SDs...
The capability of certain heavy metal ions to induce fluorescence decrease by a quenching mechanism ...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are de...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are de...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
A novel type of ion-selective nano-optode is proposed, in which a conjugated polymer is used as opti...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
Potentiometric sensors share unique characteristics that set them apart from other electrochemical s...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Potentiometric sensors share unique characteristics that set them apart from other electrochemical s...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
The sensing mechanism of fluorescent ionselective nanosensors incorporating solvatochromic dyes (SDs...
The capability of certain heavy metal ions to induce fluorescence decrease by a quenching mechanism ...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are de...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are de...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
A novel type of ion-selective nano-optode is proposed, in which a conjugated polymer is used as opti...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
Potentiometric sensors share unique characteristics that set them apart from other electrochemical s...
Bulk optode-based ion selective optical sensors work on the basis of extraction equilibria, and thei...
Potentiometric sensors share unique characteristics that set them apart from other electrochemical s...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
The sensing mechanism of fluorescent ionselective nanosensors incorporating solvatochromic dyes (SDs...
The capability of certain heavy metal ions to induce fluorescence decrease by a quenching mechanism ...