[[abstract]]An analytical model for the zeta potential and the surface charge density of pH-regulated nanorod particles is derived for the first time. This extends existing models by taking account of the effects of multiple ionic species, surface chemistry reactions, Stern layer, and surface curvature, all of practical significance. Our model predicts excellently the experimental data in the literature for the zeta potential of 11-mercaptoundecanoic acid functionalized gold nanorod. The validated analytical multi-ion model provides valuable information for applications involving pH-tunable nanorods.[[notice]]補正完畢[[booktype]]紙
[[abstract]]The electrophoresis of a pH-regulated, zwittterionic nanoparticle, taking account of its...
Electrokinetic data were measured for dilute aqueous dispersions of amorphous silica nanoparticles o...
A very good understanding of nanoparticle-ligand interactions is a key step toward obtaining mechani...
Metallic nanoparticles suspended in aqueous solutions, and functionalized with chemical and biologic...
[[abstract]]An electrophoresis model taking account of the pH-regulated nature of particles and the ...
International audienceExperimental interest in the possible curvature dependence of particle chargin...
Experimental interest in the possible curvature dependence of particle charging in electrolyte solut...
Monte Carlo simulations are used to describe the charging behavior of metal oxide nanoparticles thus...
<p>The surface charge, or zeta potential, of these nanoparticles displayed similar cationic surfaces...
International audienceZeta potential is a physicochemical parameter of particular importance in desc...
The effective hydrodynamic size and free mobility of particles of varying aspect ratio were evaluate...
We present a theory which allows us to calculate the interaction potential between charge-regulated ...
Zeta potential indirectly reflects a charge of the surface of nanoparticles in solutions and could b...
International audienceZeta potential is a physicochemical parameter of particular importance in desc...
Corrosion is the sum of processes by which an element, commonly a metal, wears away, deteriorates [1...
[[abstract]]The electrophoresis of a pH-regulated, zwittterionic nanoparticle, taking account of its...
Electrokinetic data were measured for dilute aqueous dispersions of amorphous silica nanoparticles o...
A very good understanding of nanoparticle-ligand interactions is a key step toward obtaining mechani...
Metallic nanoparticles suspended in aqueous solutions, and functionalized with chemical and biologic...
[[abstract]]An electrophoresis model taking account of the pH-regulated nature of particles and the ...
International audienceExperimental interest in the possible curvature dependence of particle chargin...
Experimental interest in the possible curvature dependence of particle charging in electrolyte solut...
Monte Carlo simulations are used to describe the charging behavior of metal oxide nanoparticles thus...
<p>The surface charge, or zeta potential, of these nanoparticles displayed similar cationic surfaces...
International audienceZeta potential is a physicochemical parameter of particular importance in desc...
The effective hydrodynamic size and free mobility of particles of varying aspect ratio were evaluate...
We present a theory which allows us to calculate the interaction potential between charge-regulated ...
Zeta potential indirectly reflects a charge of the surface of nanoparticles in solutions and could b...
International audienceZeta potential is a physicochemical parameter of particular importance in desc...
Corrosion is the sum of processes by which an element, commonly a metal, wears away, deteriorates [1...
[[abstract]]The electrophoresis of a pH-regulated, zwittterionic nanoparticle, taking account of its...
Electrokinetic data were measured for dilute aqueous dispersions of amorphous silica nanoparticles o...
A very good understanding of nanoparticle-ligand interactions is a key step toward obtaining mechani...