AbstractThis feature article summarizes recent advances in an emerging three-dimensional (3D) imaging technique, transmission electron microtomography (TEMT), and its applications to polymer-related materials, such as nanocomposites and block copolymer morphologies. With the recent developments made in TEMT, it is now possible to obtain truly quantitative 3D data with sub-nanometer resolution. A great deal of new structural information, which has never been obtained by conventional microscopy or various scattering methods, can be directly evaluated from the 3D volume data. It has also been demonstrated that, with the combination of TEMT and scattering methods, it becomes possible to study structures that have not yet been characterized. The...
This talk will highlight recent advances in Transmission Electron Microscopy (TEM) techniques that p...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
International audienceResearch on nanomaterials and nanostructured materials is burgeoning because t...
AbstractThis feature article summarizes recent advances in an emerging three-dimensional (3D) imagin...
textabstractSelf-assembling structures and their dynamical processes in polymeric systems have been ...
Three-dimensional (3D) tomography using electrons and x-rays has pushed and expanded our understandi...
Electron microscopy has played an important role in polymer characterization. Traditionally, electro...
Three-dimensional (3D) structural analysis is essential to understand the relationship between the s...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
On developing the next generation sustainable soft materials, it is often crucial to understand and ...
We have analyzed the nanoscale organization of various polymer systems by utilizing high-angle annul...
Understanding and controlling the three-dimensional structure of block copolymer (BCP) thin films is...
The physical and chemical properties of nanophase materials rely on their crystal and surface struct...
This letter is meant to make scientists aware of the proper application of transmission electron mic...
This talk will highlight recent advances in Transmission Electron Microscopy (TEM) techniques that p...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
International audienceResearch on nanomaterials and nanostructured materials is burgeoning because t...
AbstractThis feature article summarizes recent advances in an emerging three-dimensional (3D) imagin...
textabstractSelf-assembling structures and their dynamical processes in polymeric systems have been ...
Three-dimensional (3D) tomography using electrons and x-rays has pushed and expanded our understandi...
Electron microscopy has played an important role in polymer characterization. Traditionally, electro...
Three-dimensional (3D) structural analysis is essential to understand the relationship between the s...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
On developing the next generation sustainable soft materials, it is often crucial to understand and ...
We have analyzed the nanoscale organization of various polymer systems by utilizing high-angle annul...
Understanding and controlling the three-dimensional structure of block copolymer (BCP) thin films is...
The physical and chemical properties of nanophase materials rely on their crystal and surface struct...
This letter is meant to make scientists aware of the proper application of transmission electron mic...
This talk will highlight recent advances in Transmission Electron Microscopy (TEM) techniques that p...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
International audienceResearch on nanomaterials and nanostructured materials is burgeoning because t...