Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable the in situ observation of nanoscale dynamics in solution. However, the chemistry of the solution in the liquid cell during imaging is as yet poorly understood due to the generation of a complex mixture of radiolysis products by the electron beam. In this work, the etching trajectories of nanocrystals were used as a probe to determine the effect of the electron beam dose rate and preloaded etchant, FeCl3, on the chemistry of the liquid cell. Initially, illuminating the sample at a low electron beam dose rate generates hydrogen bubbles, providing a reservoir of sacrificial reductant. Increasing the electron beam dose rate leads to a constant ...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Nanomaterials exhibit unique size-dependent properties, and colloidal, metallic nanocrystals have be...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Nanomaterials exhibit unique size-dependent properties, and colloidal, metallic nanocrystals have be...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Graphene liquid cell electron microscopy has the necessary temporal and spatial resolution to enable...
Nanomaterials exhibit unique size-dependent properties, and colloidal, metallic nanocrystals have be...