Electronic devices are becoming increasingly used in chemical- and bio-sensing applications and therefore understanding the silica-electrolyte interface at the atomic scale is becoming increasingly important. For example, field-effect biosensors (BioFETs) operate by measuring perturbations in the electric field produced by the electrical double layer due to biomolecules binding on the surface. In this paper, explicit-solvent atomistic calculations of this electric field are presented and the structure and dynamics of the interface are investigated in different ionic strengths using molecular dynamics simulations. Novel results from simulation of the addition of DNA molecules and divalent ions are also presented, the latter of particular imp...
Many interfacial chemical phenomena are governed in part by electrostatic interactions between polye...
Electrostatic interactions with metal ions are essential to the structural stability and polymorphis...
We investigate the DNA–silica binding mechanism using molecular dynamics simulations. This system is...
The silica-water interface is critical to many modern technologies in chemical engineering and biose...
© 2016 Author(s).We develop an analytical theory that accounts for the image and surface charge inte...
The results of variable dielectric coefficient Poisson-Boltzmann calculations of the counter-ion con...
Because of its central role in basically all aspects of science, water is certainly one of the most ...
We have analyzed a 1.2-ns molecular dynamics simulation of 51 mM d(CG.G)7 with 21 Na+ counter-ions a...
Recent findings in sensing and biosensing based on electrical measurements\ud point to a very high s...
Self-assembled monolayers of charged polymers are an integral component of many state-of-the-art nan...
Field-Effect Transistor-sensors (FET-sensors) are a class of pH and biomolecule sensors that can be ...
Cylindrical cell model Poisson-Boltzmann (P-B) calculations are used to evaluate the electrostatic c...
Knowledge of DNA - lipid layer interactions is key for the development of biosensors, synthetic nano...
Continuum-based methods are important in calculating electrostatic properties of interfacial systems...
We probe the electrostatic cost associated with the approach phase of DNA translocation events. With...
Many interfacial chemical phenomena are governed in part by electrostatic interactions between polye...
Electrostatic interactions with metal ions are essential to the structural stability and polymorphis...
We investigate the DNA–silica binding mechanism using molecular dynamics simulations. This system is...
The silica-water interface is critical to many modern technologies in chemical engineering and biose...
© 2016 Author(s).We develop an analytical theory that accounts for the image and surface charge inte...
The results of variable dielectric coefficient Poisson-Boltzmann calculations of the counter-ion con...
Because of its central role in basically all aspects of science, water is certainly one of the most ...
We have analyzed a 1.2-ns molecular dynamics simulation of 51 mM d(CG.G)7 with 21 Na+ counter-ions a...
Recent findings in sensing and biosensing based on electrical measurements\ud point to a very high s...
Self-assembled monolayers of charged polymers are an integral component of many state-of-the-art nan...
Field-Effect Transistor-sensors (FET-sensors) are a class of pH and biomolecule sensors that can be ...
Cylindrical cell model Poisson-Boltzmann (P-B) calculations are used to evaluate the electrostatic c...
Knowledge of DNA - lipid layer interactions is key for the development of biosensors, synthetic nano...
Continuum-based methods are important in calculating electrostatic properties of interfacial systems...
We probe the electrostatic cost associated with the approach phase of DNA translocation events. With...
Many interfacial chemical phenomena are governed in part by electrostatic interactions between polye...
Electrostatic interactions with metal ions are essential to the structural stability and polymorphis...
We investigate the DNA–silica binding mechanism using molecular dynamics simulations. This system is...