Controlling the properties of nanostructures requires a detailed understanding of structure, microstructure, and chemistry at ever-decreasing length scales. The modern day transmission electron microscope has thus become an indispensable tool in the study of nanostructures. In this Perspective, we present a brief account of the capabilities of the TEM with some typical examples for characterizing nanostructures. The modern-day TEM has moved from a simple characterization tool to a nanoscale laboratory enabling in situ observation of several fundamental processes at unprecedented resolution levels
Traditionally,electron microscopes are mainly used to characterize structures while electron beam da...
Understanding mechanical, electrical, thermal, thermoelectric, optical, optoelectronic and photovolt...
The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a fr...
The Transmission Electron Microscope (TEM) is the ultimate tool to see and measure structures on the...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
cited By 1International audienceTransmission electron microscopy (TEM), with its various imaging mod...
Spectacular advances in electromagnetic lens design conquer spherical aberration and push image reso...
Using manipulation holders specially designed for transmission electron microscope (TEM), nanostruct...
Modern methods of in situ transmission electron microscopy (TEM) allow one to not only manipulate wi...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
This lab, presented by the National Nanotechnology Infrastructure Network, teaches students about Sc...
Abstract: Based on the idea of "setting up a nanolab inside a transmission electron microscopy ...
Analytical transmission electron microscopy (TEM) is used to reveal sub-micrometer, internal fine st...
Traditionally,electron microscopes are mainly used to characterize structures while electron beam da...
Understanding mechanical, electrical, thermal, thermoelectric, optical, optoelectronic and photovolt...
The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a fr...
The Transmission Electron Microscope (TEM) is the ultimate tool to see and measure structures on the...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
cited By 1International audienceTransmission electron microscopy (TEM), with its various imaging mod...
Spectacular advances in electromagnetic lens design conquer spherical aberration and push image reso...
Using manipulation holders specially designed for transmission electron microscope (TEM), nanostruct...
Modern methods of in situ transmission electron microscopy (TEM) allow one to not only manipulate wi...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
This lab, presented by the National Nanotechnology Infrastructure Network, teaches students about Sc...
Abstract: Based on the idea of "setting up a nanolab inside a transmission electron microscopy ...
Analytical transmission electron microscopy (TEM) is used to reveal sub-micrometer, internal fine st...
Traditionally,electron microscopes are mainly used to characterize structures while electron beam da...
Understanding mechanical, electrical, thermal, thermoelectric, optical, optoelectronic and photovolt...
The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a fr...