Latest knowledge on the reactivity of charged nanoparticulate complexants toward aqueous metal ions is discussed in mechanistic detail. We present a rigorous generic description of electrostatic and chemical contributions to metal ion binding by nanoparticulate complexants, and their dependence on particle size, particle type (i.e., reactive sites distributed within the particle body or confined to the surface), ionic strength of the aqueous medium, and the nature of the metal ion. For the example case of soft environmental particles such as fulvic and humic acids, practical strategies are delineated for determining intraparticulate metal ion speciation, and for evaluating intrinsic chemical binding affinities and heterogeneity. The results...
<p>Purely Donnan type models for electrostatic binding by humic acid (HA) nanoparticles are shown to...
Most nanoparticles (NPs) dispersed in aqueous media carry a net charge. The ensuing electric field p...
Most nanoparticles (NPs) dispersed in aqueous media carry a net charge. The ensuing electric field p...
Latest knowledge on the reactivity of charged nanoparticulate complexants toward aqueous metal ions ...
An inherent property of a dispersion of charged nanoparticles is that their charges and reactive sit...
An inherent property of a dispersion of charged nanoparticles is that their charges and reactive sit...
Nanoparticles (NPs) exhibit unique reactivity features that stem from the spatial confinement of the...
International audienceA framework is presented for understanding the reactivity of nanoparticulate r...
<p>In aqueous dispersions of soft, charged nanoparticles, the physicochemical conditions prevailing ...
In aqueous dispersions of soft, charged nanoparticles, the physicochemical conditions prevailing wit...
Most nanoparticles (NPs) dispersed in aqueous media carry a net charge. The ensuing electric field p...
International audienceWe report a comprehensive theory to evaluate the kinetics of complex formation...
<p>Purely Donnan type models for electrostatic binding by humic acid (HA) nanoparticles are shown to...
Purely Donnan type models for electrostatic binding by humic acid (HA) nanoparticles are shown to be...
The electrostatic contributions to metal ion binding by fulvic acids (FAs) are characterized in ligh...
<p>Purely Donnan type models for electrostatic binding by humic acid (HA) nanoparticles are shown to...
Most nanoparticles (NPs) dispersed in aqueous media carry a net charge. The ensuing electric field p...
Most nanoparticles (NPs) dispersed in aqueous media carry a net charge. The ensuing electric field p...
Latest knowledge on the reactivity of charged nanoparticulate complexants toward aqueous metal ions ...
An inherent property of a dispersion of charged nanoparticles is that their charges and reactive sit...
An inherent property of a dispersion of charged nanoparticles is that their charges and reactive sit...
Nanoparticles (NPs) exhibit unique reactivity features that stem from the spatial confinement of the...
International audienceA framework is presented for understanding the reactivity of nanoparticulate r...
<p>In aqueous dispersions of soft, charged nanoparticles, the physicochemical conditions prevailing ...
In aqueous dispersions of soft, charged nanoparticles, the physicochemical conditions prevailing wit...
Most nanoparticles (NPs) dispersed in aqueous media carry a net charge. The ensuing electric field p...
International audienceWe report a comprehensive theory to evaluate the kinetics of complex formation...
<p>Purely Donnan type models for electrostatic binding by humic acid (HA) nanoparticles are shown to...
Purely Donnan type models for electrostatic binding by humic acid (HA) nanoparticles are shown to be...
The electrostatic contributions to metal ion binding by fulvic acids (FAs) are characterized in ligh...
<p>Purely Donnan type models for electrostatic binding by humic acid (HA) nanoparticles are shown to...
Most nanoparticles (NPs) dispersed in aqueous media carry a net charge. The ensuing electric field p...
Most nanoparticles (NPs) dispersed in aqueous media carry a net charge. The ensuing electric field p...