Although nanocrystal morphology is controllable using conventional colloidal synthesis, multiple characterization techniques are typically needed to determine key properties like the nucleation rate, induction time, growth rate, and the resulting morphology. Recently, researchers have demonstrated growth of nanocrystals by <i>in situ</i> electron beam reduction, offering direct observations of single nanocrystals and eliminating the need for multiple characterization techniques; however, they found nanocrystal morphologies consistent with two different growth mechanisms for the same electron beam parameters. Here we show that the electron beam current plays a role analogous to the concentration of reducing agent in conventional synthesis, b...
This article reviews the advancements and prospects of liquid cell transmission electron microscopy ...
It is conventionally assumed that the growth of monodisperse colloidal nanocrystals requires a tempo...
An understanding of how facets of a nanocrystal develop is critical for controlling nanocrystal shap...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...
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...
Nanomaterials exhibit unique size-dependent properties, and colloidal, metallic nanocrystals have be...
Nanomaterials exhibit unique size-dependent properties, and colloidal, metallic nanocrystals have be...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
This article reviews the advancements and prospects of liquid cell transmission electron microscopy ...
It is conventionally assumed that the growth of monodisperse colloidal nanocrystals requires a tempo...
An understanding of how facets of a nanocrystal develop is critical for controlling nanocrystal shap...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
In this article, we report on complex nanochemistry and transport phenomena associated with silver n...
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...
Nanomaterials exhibit unique size-dependent properties, and colloidal, metallic nanocrystals have be...
Nanomaterials exhibit unique size-dependent properties, and colloidal, metallic nanocrystals have be...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
This article reviews the advancements and prospects of liquid cell transmission electron microscopy ...
It is conventionally assumed that the growth of monodisperse colloidal nanocrystals requires a tempo...
An understanding of how facets of a nanocrystal develop is critical for controlling nanocrystal shap...