Recent development of liquid phase transmission electron microscopy (TEM) enables the study of specimens in wet ambient conditions within a liquid cell; however, direct structural observation of biological samples in their native solution using TEM is challenging since low-mass biomaterials embedded in a thick liquid layer of the host cell demonstrate low contrast. Furthermore, the integrity of delicate wet samples is easily compromised during typical sample preparation and TEM imaging. To overcome these limitations, we introduce a graphene liquid cell (GLC) using multilayer graphene sheets to reliably encapsulate and preserve biological samples in a liquid for TEM observation. We achieve nanometer scale spatial resolution with high contras...
The application of electron microscopy to hydrated biological samples has been limited by high-vacuu...
We demonstrate the application of graphene as a support for imaging individual biological molecules ...
Liquid-phase transmission electron microscopy (TEM) can probe and visualize dynamic events with stru...
Recent development of liquid phase transmission electron microscopy (TEM) enables the study of speci...
Recent development of liquid phase transmission electron microscopy (TEM) enables the study of speci...
*S Supporting Information ABSTRACT: Recent development of liquid phase transmission electron microsc...
Graphene liquid cells (GLCs) for transmission electron microscopy (TEM) enable high-resolution, real...
Graphene liquid cells (GLCs) for transmission electron microscopy (TEM) enable high-resolution, real...
Graphene liquid cells (GLCs) for transmission electron microscopy (TEM) enable high‐resolution, real...
Graphene liquid cells (GLCs) for transmission electron microscopy (TEM) enable high‐resolution, real...
In-cell exploration of biomolecular constituents is the new frontier of cellular biology that will a...
We introduce a new type of liquid cell for in situ transmission electron microscopy (TEM) based on e...
Graphene liquid cell electron microscopy provides the ability to observe nanoscale chemical transfor...
Liquid-phase transmission electron microscopy (TEM) can probe and visualize dynamic events with stru...
We have designed and fabricated a TEM (transmission electron microscopy) liquid cell with hundreds o...
The application of electron microscopy to hydrated biological samples has been limited by high-vacuu...
We demonstrate the application of graphene as a support for imaging individual biological molecules ...
Liquid-phase transmission electron microscopy (TEM) can probe and visualize dynamic events with stru...
Recent development of liquid phase transmission electron microscopy (TEM) enables the study of speci...
Recent development of liquid phase transmission electron microscopy (TEM) enables the study of speci...
*S Supporting Information ABSTRACT: Recent development of liquid phase transmission electron microsc...
Graphene liquid cells (GLCs) for transmission electron microscopy (TEM) enable high-resolution, real...
Graphene liquid cells (GLCs) for transmission electron microscopy (TEM) enable high-resolution, real...
Graphene liquid cells (GLCs) for transmission electron microscopy (TEM) enable high‐resolution, real...
Graphene liquid cells (GLCs) for transmission electron microscopy (TEM) enable high‐resolution, real...
In-cell exploration of biomolecular constituents is the new frontier of cellular biology that will a...
We introduce a new type of liquid cell for in situ transmission electron microscopy (TEM) based on e...
Graphene liquid cell electron microscopy provides the ability to observe nanoscale chemical transfor...
Liquid-phase transmission electron microscopy (TEM) can probe and visualize dynamic events with stru...
We have designed and fabricated a TEM (transmission electron microscopy) liquid cell with hundreds o...
The application of electron microscopy to hydrated biological samples has been limited by high-vacuu...
We demonstrate the application of graphene as a support for imaging individual biological molecules ...
Liquid-phase transmission electron microscopy (TEM) can probe and visualize dynamic events with stru...