We present and validate an equilibrium model based on the Poisson-Boltzmann equations that includes the main ingredients to simulate ion-sensitive membranes in the context of electrochemical potentiometric sensors with and without ionophores. With respect to phase boundary models, our model includes spatial resolution of the electrostatic potential and concentrations. The model enables the study of Nernstian and non-Nernstian equilibrium responses, helps improving the detection range and investigating selectivity and cross-sensitivity issues related to interferent ions in the sample solution. Therefore, the model is a useful support for the design of potentiometric microelectronic sensors and helps optimizing relevant membrane features such...
We present an approach to simulate ion’s drift and diffusion in chemical sensors based on ion-select...
The Nernst-Planck-Poisson (NPP) model is a general approach to the description of the electro-diffus...
We present an approach to simulate ion’s drift and diffusion in chemical sensors based on ion-select...
We present and validate an equilibrium model based on the Poisson-Boltzmann equations that includes ...
We present and validate an equilibrium model based on the Poisson-Boltzmann equations that includes ...
We propose a steady state model for ion-selective membranes (ISM) as selectivity element in potentio...
We propose a steady state model for ion selective membranes (ISM) as selectivity element in potentio...
We propose a steady state model for ion selective membranes (ISM) as selectivity element in potentio...
We propose a steady state model for ion selective membranes (ISM) as selectivity element in potentio...
The majority of present theoretical interpretations of ion-sensor response focus on phase boundary p...
A generalized description of the response behavior of potentiometric polymer membrane ion-selective ...
A generalized description of the response behavior of potentiometric polymer membrane ion-selective ...
The Nernst-Planck-Poisson model is used for modeling the sensitivity and selectivity of ion-selectiv...
We present an approach to simulate ion's drift and diffusion in chemical sensors based on ion-select...
We present an approach to simulate ion's drift and diffusion in chemical sensors based on ion-select...
We present an approach to simulate ion’s drift and diffusion in chemical sensors based on ion-select...
The Nernst-Planck-Poisson (NPP) model is a general approach to the description of the electro-diffus...
We present an approach to simulate ion’s drift and diffusion in chemical sensors based on ion-select...
We present and validate an equilibrium model based on the Poisson-Boltzmann equations that includes ...
We present and validate an equilibrium model based on the Poisson-Boltzmann equations that includes ...
We propose a steady state model for ion-selective membranes (ISM) as selectivity element in potentio...
We propose a steady state model for ion selective membranes (ISM) as selectivity element in potentio...
We propose a steady state model for ion selective membranes (ISM) as selectivity element in potentio...
We propose a steady state model for ion selective membranes (ISM) as selectivity element in potentio...
The majority of present theoretical interpretations of ion-sensor response focus on phase boundary p...
A generalized description of the response behavior of potentiometric polymer membrane ion-selective ...
A generalized description of the response behavior of potentiometric polymer membrane ion-selective ...
The Nernst-Planck-Poisson model is used for modeling the sensitivity and selectivity of ion-selectiv...
We present an approach to simulate ion's drift and diffusion in chemical sensors based on ion-select...
We present an approach to simulate ion's drift and diffusion in chemical sensors based on ion-select...
We present an approach to simulate ion’s drift and diffusion in chemical sensors based on ion-select...
The Nernst-Planck-Poisson (NPP) model is a general approach to the description of the electro-diffus...
We present an approach to simulate ion’s drift and diffusion in chemical sensors based on ion-select...