Observing processes of nanoscale materials of low atomic number is possible using liquid phase electron microscopy (LP-EM). However, the achievable spatial resolution (d) is limited by radiation damage. Here, we examine a strategy for optimizing LP-EM experiments based on an analytical model and experimental measurements, and develop a method for quantifying image quality at ultra low electron dose De using scanning transmission electron microscopy (STEM). As experimental test case we study the formation of a colloidal binary system containing 30 nm diameter SiO2 nanoparticles (SiONPs), and 100 nm diameter polystyrene microspheres (PMs). We show that annular dark field (DF) STEM is preferred over bright field (BF) STEM for practical reasons...
We describe a new type of scanning electron microscope which works by directly imaging the electron ...
In situ liquid cell transmission electron microscopy (LC-TEM) allows dynamic nanoscale characterizat...
The recent development of liquid cell (scanning) transmission electron microscopy (LC-(S)TEM) has op...
Observing processes of nanoscale materials of low atomic number is possible using liquid phase elect...
It is of great technological interest to control the organization of nanoparticles (NPs) into functi...
Abstract The Use of Liquid Phase Transmission Electron Microscopy for Quantifying Interactions Betwe...
Many functional materials are difficult to analyse by scanning transmission electron microscopy (STE...
Innovations in liquid-phase electron microscopy (LP-EM) have made it possible to perform experiments...
Quantitative scanning transmission electron microscopy (STEM) allows composition determination for n...
Many functional materials are difficult to analyze by Scanning Transmission Electron Microscopy (STE...
Scanning electron microscopy is capable to provide chemical information on specimens interesting for...
We describe a type of scanning electron microscope that works by directly imaging the electron field...
Many functional materials are difficult to analyse by scanning transmission electron microscopy (STE...
Samples fully embedded in liquid can be studied at a nanoscale spatial resolution with Scanning Tran...
Standard transmission electron microscopy nanoparticle sample preparation generally requires the com...
We describe a new type of scanning electron microscope which works by directly imaging the electron ...
In situ liquid cell transmission electron microscopy (LC-TEM) allows dynamic nanoscale characterizat...
The recent development of liquid cell (scanning) transmission electron microscopy (LC-(S)TEM) has op...
Observing processes of nanoscale materials of low atomic number is possible using liquid phase elect...
It is of great technological interest to control the organization of nanoparticles (NPs) into functi...
Abstract The Use of Liquid Phase Transmission Electron Microscopy for Quantifying Interactions Betwe...
Many functional materials are difficult to analyse by scanning transmission electron microscopy (STE...
Innovations in liquid-phase electron microscopy (LP-EM) have made it possible to perform experiments...
Quantitative scanning transmission electron microscopy (STEM) allows composition determination for n...
Many functional materials are difficult to analyze by Scanning Transmission Electron Microscopy (STE...
Scanning electron microscopy is capable to provide chemical information on specimens interesting for...
We describe a type of scanning electron microscope that works by directly imaging the electron field...
Many functional materials are difficult to analyse by scanning transmission electron microscopy (STE...
Samples fully embedded in liquid can be studied at a nanoscale spatial resolution with Scanning Tran...
Standard transmission electron microscopy nanoparticle sample preparation generally requires the com...
We describe a new type of scanning electron microscope which works by directly imaging the electron ...
In situ liquid cell transmission electron microscopy (LC-TEM) allows dynamic nanoscale characterizat...
The recent development of liquid cell (scanning) transmission electron microscopy (LC-(S)TEM) has op...