The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a frequently used analytical method in materials chemistry. In many cases, the preparation of the TEM sample involves drying and staining steps, and the collection of images leads to the interaction of the specimen with the electron beam. Both aspects call for cautious interpretation of the resulting electron micrographs. Alternatively, a near-native solvated state can be preserved by cryogenic vitrification and subsequent imaging by low-dose cryogenic TEM. In this Minireview, we provide a critical analysis of sample preparation, and more importantly, of the acquisition and interpretation of electron micrographs. This overview should provide a fr...
A new approach to the study of nanoparticle systems has been introduced. Nanoparticle systems in aqu...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
It has been shown, by imaging gold (200) planes, that it is possible to achieve better than 0.20-nm ...
The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a fr...
Abstract This letter is meant to make scientists aware of the proper application of transmission ele...
Cryo-electron microscopy has grown overwhelmingly in popularity in recent years. Instrumental develo...
Cryo electron microscopy cryo EM is a powerful structure determination technique that is well suit...
Cryo-electron microscopy has evolved in an established approach to study the structure of bio-colloi...
Recent advances in transmission electron microscopy (TEM) have led to unprecedented automated contro...
We review the use of transmission electron microscopy (TEM) and associated techniques for the analys...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
Liquid crystals (LCs) represent a challenging group of materials for direct transmission electron mi...
<p>TEM is one of the few techniques that can identify nanoparticles according to the current d...
A new approach to the study of nanoparticle systems has been introduced. Nanoparticle systems in aqu...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
It has been shown, by imaging gold (200) planes, that it is possible to achieve better than 0.20-nm ...
The investigation of solution-borne nanostructures by transmission electron microscopy (TEM) is a fr...
Abstract This letter is meant to make scientists aware of the proper application of transmission ele...
Cryo-electron microscopy has grown overwhelmingly in popularity in recent years. Instrumental develo...
Cryo electron microscopy cryo EM is a powerful structure determination technique that is well suit...
Cryo-electron microscopy has evolved in an established approach to study the structure of bio-colloi...
Recent advances in transmission electron microscopy (TEM) have led to unprecedented automated contro...
We review the use of transmission electron microscopy (TEM) and associated techniques for the analys...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
Liquid crystals (LCs) represent a challenging group of materials for direct transmission electron mi...
<p>TEM is one of the few techniques that can identify nanoparticles according to the current d...
A new approach to the study of nanoparticle systems has been introduced. Nanoparticle systems in aqu...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
It has been shown, by imaging gold (200) planes, that it is possible to achieve better than 0.20-nm ...