The lability of a complex species between a metal ion M and a binding site S, MS, is conventionally defined with respect to an ongoing process at a reactive interface, for example, the conversion or accumulation of the free metal ion M by a sensor. In the case of soft charged multisite nanoparticulate complexes, the chemodynamic features that are operative within the micro environment of the particle body generally differ substantially from those for dissolved similar single-site complexes in the same medium. Here we develop a conceptual framework for the chemodynamics and the ensuing lability of soft (3D) nanoparticulate metal complexes. The approach considers the dynamic features of MS at the intraparticulate level and their impact on the...
A theoretical discussion is presented to describe the formation and dissociation rate constants for ...
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...
The lability of a complex species between a metal ion M and a binding site S, MS, is conventionally ...
Nanoparticles (NPs) exhibit unique reactivity features that stem from the spatial confinement of the...
The lability of metal complexes expresses the extent of the dissociative contribution of the complex...
The reaction layer concept is commonly adopted to estimate the contribution of metal complexes to th...
The reaction layer concept is commonly adopted to estimate the contribution of metal complexes to th...
The reaction layer concept is commonly adopted to estimate the contribution of metal complexes to th...
International audienceA framework is presented for understanding the reactivity of nanoparticulate r...
Lability concepts are elaborated for metal complexes with soft (3D) and hard (2D) aqueous nanopartic...
<p>Lability concepts are elaborated for metal complexes with soft (3D) and hard (2D) aqueous nanopar...
<p>Lability concepts are elaborated for metal complexes with soft (3D) and hard (2D) aqueous nanopar...
A theoretical discussion is presented to describe the formation and dissociation rate constants for ...
A theoretical discussion is presented to describe the formation and dissociation rate constants for ...
A theoretical discussion is presented to describe the formation and dissociation rate constants for ...
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...
The lability of a complex species between a metal ion M and a binding site S, MS, is conventionally ...
Nanoparticles (NPs) exhibit unique reactivity features that stem from the spatial confinement of the...
The lability of metal complexes expresses the extent of the dissociative contribution of the complex...
The reaction layer concept is commonly adopted to estimate the contribution of metal complexes to th...
The reaction layer concept is commonly adopted to estimate the contribution of metal complexes to th...
The reaction layer concept is commonly adopted to estimate the contribution of metal complexes to th...
International audienceA framework is presented for understanding the reactivity of nanoparticulate r...
Lability concepts are elaborated for metal complexes with soft (3D) and hard (2D) aqueous nanopartic...
<p>Lability concepts are elaborated for metal complexes with soft (3D) and hard (2D) aqueous nanopar...
<p>Lability concepts are elaborated for metal complexes with soft (3D) and hard (2D) aqueous nanopar...
A theoretical discussion is presented to describe the formation and dissociation rate constants for ...
A theoretical discussion is presented to describe the formation and dissociation rate constants for ...
A theoretical discussion is presented to describe the formation and dissociation rate constants for ...
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...