In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and straightforward data for assessing classical growth models. Here, we observe the growth trajectories of individual Ag nanoparticles in solution using in situ scanning transmission electron microscopy. For the first time, we provide experimental evidence of growth rates of Ag nanoparticles in the presence of Pt in solution that are significantly faster than predicted by Lifshitz-Slyozov-Wagner theory. We attribute these observed anomalous growth rates to the synergistic effects of the catalytic properties of Pt and the electron beam itself. Transiently reduced Pt atoms serve as active sites for Ag ions to grow, thereby playing a key role in c...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Understanding the growth mechanism of noble metal nanocrystals during solution synthesis is of signi...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
Although nanocrystal morphology is controllable using conventional colloidal synthesis, multiple cha...
It is conventionally assumed that the growth of monodisperse colloidal nanocrystals requires a tempo...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...
An understanding of how facets of a nanocrystal develop is critical for controlling nanocrystal shap...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Understanding the growth mechanism of noble metal nanocrystals during solution synthesis is of signi...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
Although nanocrystal morphology is controllable using conventional colloidal synthesis, multiple cha...
It is conventionally assumed that the growth of monodisperse colloidal nanocrystals requires a tempo...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...
An understanding of how facets of a nanocrystal develop is critical for controlling nanocrystal shap...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Direct observations of solution-phase nanoparticle growth using in situ liquid transmission electron...
Understanding the growth mechanism of noble metal nanocrystals during solution synthesis is of signi...