Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage sensitive dyes (VSDs) have been introduced into this type of sensors only very recently, forming a new class of analytical tools. Here, K+-sensitive nanospheres incorporating a lipophilic VSD were successfully fabricated and characterized. The nanosensors were readily delivered into the social amoeba Dictyostelium discoideum in a non-invasive manner, forming a promising new platform for intracellular ion quantification and imaging
We developed membrane voltage nanosensors that are based on inorganic semiconductor nanoparticles. W...
Potentiometric sensors share unique characteristics that set them apart from other electrochemical s...
Optical nanoparticle (NP)-based sensors have been widely implemented as tools for detection of targe...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are de...
Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are de...
One of the key challenges in the design of a sensor for measuring extracellular changes in potassium...
The earth is a planet of water where diverse living organisms have flourished and gone extinct. In ...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
The sensing mechanism of fluorescent ionselective nanosensors incorporating solvatochromic dyes (SDs...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
Transition metal selective ionophore and sensor development has been of great interest considering t...
We developed membrane voltage nanosensors that are based on inorganic semiconductor nanoparticles. W...
Potentiometric sensors share unique characteristics that set them apart from other electrochemical s...
Optical nanoparticle (NP)-based sensors have been widely implemented as tools for detection of targe...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are de...
Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are de...
One of the key challenges in the design of a sensor for measuring extracellular changes in potassium...
The earth is a planet of water where diverse living organisms have flourished and gone extinct. In ...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
Potentiometric sensors require the implementation of conducting wires for signal transduction, but t...
The sensing mechanism of fluorescent ionselective nanosensors incorporating solvatochromic dyes (SDs...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
Transition metal selective ionophore and sensor development has been of great interest considering t...
We developed membrane voltage nanosensors that are based on inorganic semiconductor nanoparticles. W...
Potentiometric sensors share unique characteristics that set them apart from other electrochemical s...
Optical nanoparticle (NP)-based sensors have been widely implemented as tools for detection of targe...