peer reviewedOstwald ripening is a major source of deactivation of functional nanomaterials. It consists in the growth of large nanoparticles at the expense of smaller ones via the formation and decomposition of intermediate chemical species. In most materials of practical interest nanoparticles are dispersed in porous supports with which they interact mechanically. We analyze the consequences of this chemo-mechanical coupling on both kinetic and equilibrium aspects of Ostwald ripening. We show that the long-term stability of a collection of confined nanoparticles depends on nucleation-like events, whereby few particles break through the pore walls early in the process and later grow at the expense of all other particles. This notably expla...
Size selection was demonstrated to suppress Ostwald ripening of supported catalytic nanoparticles. W...
We have investigated experimentally and theoretically the role that ripening processes play in the e...
Most syntheses of thiolate-protected metal nanoparticles (NPs) include a thermochemical step in whic...
The presented theoretical treatment of interface-controlled Ostwald ripening of supported metal nano...
Due to high surface area, supported metal nanoparticles are thermodynamically prone to sintering. Th...
Atomistic Theory of Ostwald Ripening and Disintegration of Supported Nanoparticles under Reaction Co...
Hollow nanoparticles (NPs) are produced by void nucleation and growth during chemical reactions. How...
The phenomenon of Ostwald Ripening is generally considered a limiting factor in the monodisperse pro...
Recently, gram quantities of monodisperse gold or silver nanoparticles were reported to be produced ...
International audiencePinning of the contact line and gas oversaturation explain the stability of si...
The Ostwald ripening theory is commonly adopted to rationalize the growth of large metal nanoparticl...
A major cause of supported metal catalyst deactivation is particle growth by Ostwald ripening. Nicke...
Understanding nanoparticle (NP) attachment inside narrow passages such as the pore throats of porous...
Practical and theoretical considerations that apply when aiming to formulate by ultrasonication very...
A major cause of supported metal catalyst deactivation is particle growth by Ostwald ripening. Nicke...
Size selection was demonstrated to suppress Ostwald ripening of supported catalytic nanoparticles. W...
We have investigated experimentally and theoretically the role that ripening processes play in the e...
Most syntheses of thiolate-protected metal nanoparticles (NPs) include a thermochemical step in whic...
The presented theoretical treatment of interface-controlled Ostwald ripening of supported metal nano...
Due to high surface area, supported metal nanoparticles are thermodynamically prone to sintering. Th...
Atomistic Theory of Ostwald Ripening and Disintegration of Supported Nanoparticles under Reaction Co...
Hollow nanoparticles (NPs) are produced by void nucleation and growth during chemical reactions. How...
The phenomenon of Ostwald Ripening is generally considered a limiting factor in the monodisperse pro...
Recently, gram quantities of monodisperse gold or silver nanoparticles were reported to be produced ...
International audiencePinning of the contact line and gas oversaturation explain the stability of si...
The Ostwald ripening theory is commonly adopted to rationalize the growth of large metal nanoparticl...
A major cause of supported metal catalyst deactivation is particle growth by Ostwald ripening. Nicke...
Understanding nanoparticle (NP) attachment inside narrow passages such as the pore throats of porous...
Practical and theoretical considerations that apply when aiming to formulate by ultrasonication very...
A major cause of supported metal catalyst deactivation is particle growth by Ostwald ripening. Nicke...
Size selection was demonstrated to suppress Ostwald ripening of supported catalytic nanoparticles. W...
We have investigated experimentally and theoretically the role that ripening processes play in the e...
Most syntheses of thiolate-protected metal nanoparticles (NPs) include a thermochemical step in whic...