We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective nanosensors that operate on the basis of bulk ion-exchange sensing principles. The nanosphere matrix is composed of bis(2-ethylhexyl) sebacate (DOS) and a triblock copolymer Pluronic(®) F-127, which also functions as a surfactant to stabilize the nanoparticle. The particles can be prepared easily in large quantity without resorting to further complicated purification. Dynamic light scattering shows that these particles have a monodisperse size distribution with an average diameter of ∼40 nm, suggesting that the nanoparticles are among the smallest ionophore-based ion-selective nanosensors reported to date. A newly reported oxazinoindoline (Ox) ...
Traditionally, optical titrations of inorganic ions are based on a rapid and visible color change at...
New ionophores are essential for advancing the art of selective ion sensing. Metal-organic supercont...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
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...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
For half a century, complexometric titrations of metal ions have been performed with water-soluble c...
We present here a new family of pH insensitive ion-selective optical sensors based on emulsified nan...
For half a century, complexometric titrations of metal ions have been performed with water-soluble c...
Ionophores are widely used ion carriers in ion selective sensors. The effective stability constant (...
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...
The sensing mechanism of fluorescent ionselective nanosensors incorporating solvatochromic dyes (SDs...
Ionophores are widely used ion carriers in ion selective sensors. The effective stability constant (...
Traditionally, optical titrations of inorganic ions are based on a rapid and visible color change at...
New ionophores are essential for advancing the art of selective ion sensing. Metal-organic supercont...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
We present a convenient precipitation procedure to fabricate ultrasmall fluorescent ion-selective na...
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...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...
For half a century, complexometric titrations of metal ions have been performed with water-soluble c...
We present here a new family of pH insensitive ion-selective optical sensors based on emulsified nan...
For half a century, complexometric titrations of metal ions have been performed with water-soluble c...
Ionophores are widely used ion carriers in ion selective sensors. The effective stability constant (...
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...
The sensing mechanism of fluorescent ionselective nanosensors incorporating solvatochromic dyes (SDs...
Ionophores are widely used ion carriers in ion selective sensors. The effective stability constant (...
Traditionally, optical titrations of inorganic ions are based on a rapid and visible color change at...
New ionophores are essential for advancing the art of selective ion sensing. Metal-organic supercont...
Ionophore-based ion-selective optical nanosensors have been explored for a number of years. Voltage ...