Identifying corrosion initiation events in metals and alloys demands techniques that can provide temporal and spatial resolution simultaneously. Transmission electron microscopy (TEM) enables one to obtain microstructural and chemical descriptors of materials at atomic/nanoscopic level and has been used in corrosion studies of many metal-electrolyte combinations. Conventionally, ex situ and quasi in situ TEM studies of pre- and post-corroded samples were performed, but possible experimental artifacts such as dehydrated surfaces might not fully represent the real interfacial conditions as compared to those when actually immersed in the electrolyte. Recent advances in liquid cell transmission electron microscopy (LC-TEM) allows for in situ mo...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
This paper describes a Transmission Electron Microscopy (TEM) investigation on the surface of copper...
The advent of the electron microscope has fostered major advances in a broad spectrum of disciplines...
Identifying corrosion initiation events in metals and alloys demands techniques that can provide tem...
Liquid-phase transmission electron microscopy (LP-TEM) has provided corrosion scientists with a uniq...
The aim of the study described in this Thesis is the imaging of sensitive processes at the nanoscale...
Recent results are presented demonstrating the application of cross-sectional analytical transmissio...
In the modern age of ubiquitous mobile technology, demand for ever increasing battery capacity and s...
Liquid cell transmission electron microscopy (LCTEM) was developed for analyzing the liquid-phase sa...
The foreseeable worldwide energy and environmental challenges demand renewable alternative sources, ...
Dealloying is involved in materials science responsible for fabrication of nanoscale structures bene...
Advances in seeing small things Electron microscopes, particularly those with aberration correction,...
For many decades, corrosion and corrosion inhibition of high-strength aluminium alloys have been stu...
This paper describes methods to study the initiation and formation of localized corrosion pits on st...
Transmission electron microscopy (TEM) has long been an essential tool for understanding the structu...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
This paper describes a Transmission Electron Microscopy (TEM) investigation on the surface of copper...
The advent of the electron microscope has fostered major advances in a broad spectrum of disciplines...
Identifying corrosion initiation events in metals and alloys demands techniques that can provide tem...
Liquid-phase transmission electron microscopy (LP-TEM) has provided corrosion scientists with a uniq...
The aim of the study described in this Thesis is the imaging of sensitive processes at the nanoscale...
Recent results are presented demonstrating the application of cross-sectional analytical transmissio...
In the modern age of ubiquitous mobile technology, demand for ever increasing battery capacity and s...
Liquid cell transmission electron microscopy (LCTEM) was developed for analyzing the liquid-phase sa...
The foreseeable worldwide energy and environmental challenges demand renewable alternative sources, ...
Dealloying is involved in materials science responsible for fabrication of nanoscale structures bene...
Advances in seeing small things Electron microscopes, particularly those with aberration correction,...
For many decades, corrosion and corrosion inhibition of high-strength aluminium alloys have been stu...
This paper describes methods to study the initiation and formation of localized corrosion pits on st...
Transmission electron microscopy (TEM) has long been an essential tool for understanding the structu...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
This paper describes a Transmission Electron Microscopy (TEM) investigation on the surface of copper...
The advent of the electron microscope has fostered major advances in a broad spectrum of disciplines...