This work reviews recent research on the design and control of interfaces in engineering nanomaterials. Four case studies are presented that demonstrate the power of a multimodal approach to the characterization of different types of interfaces. We have used a combination of conventional, high resolution, and analytical transmission electron microscopy, microbeam electron diffraction, and three-dimensional atom probe to study polymer-clay nanocomposites, turbine rotor steels used for power generation, multicomponent aluminum alloys, and nanocrystalline magnetic materials.12 page(s
International audienceInterfaces play critical roles in materials, and are usually both structurally...
Thomas G, Hütten A. Characterization of nano-magnetic structures. Nanostructured Materials. 1997;9(1...
Advanced material characterization (AMC) techniques are becoming popular because of continual innova...
In this chapter, we explore the development and application of nanostructural metallic materials, t...
This work reviews recent research results in three case studies that demonstrate the importance of a...
There is an increasing need to understand materials phenomena and processes at the nanoscale as engi...
The project is focused on high structural identification of interface properties in multicomponents ...
Interfaces in nanomaterials come in many shapes and forms. Although only occupying a small fraction ...
Nanometrology refers to measurement techniques that assess materials properties at the nanoscale. La...
This paper informally speculates on the challenges of determining the atomic-scale surface and inter...
As interest in nanomaterials and nanotechnology continues to grow, so does the need for more efficie...
Nanometrology refers to measurement techniques that assess materials properties at the nanoscale. La...
This volume combines the proceedings of two prominent symposia presented by TMS\u27s Materials Proce...
Material characterization is challenged by continuously decreasing device dimensions placing signifi...
Since the discovery of graphene, 2-dimensional (2D) semiconductors like graphene oxide (GO) and tran...
International audienceInterfaces play critical roles in materials, and are usually both structurally...
Thomas G, Hütten A. Characterization of nano-magnetic structures. Nanostructured Materials. 1997;9(1...
Advanced material characterization (AMC) techniques are becoming popular because of continual innova...
In this chapter, we explore the development and application of nanostructural metallic materials, t...
This work reviews recent research results in three case studies that demonstrate the importance of a...
There is an increasing need to understand materials phenomena and processes at the nanoscale as engi...
The project is focused on high structural identification of interface properties in multicomponents ...
Interfaces in nanomaterials come in many shapes and forms. Although only occupying a small fraction ...
Nanometrology refers to measurement techniques that assess materials properties at the nanoscale. La...
This paper informally speculates on the challenges of determining the atomic-scale surface and inter...
As interest in nanomaterials and nanotechnology continues to grow, so does the need for more efficie...
Nanometrology refers to measurement techniques that assess materials properties at the nanoscale. La...
This volume combines the proceedings of two prominent symposia presented by TMS\u27s Materials Proce...
Material characterization is challenged by continuously decreasing device dimensions placing signifi...
Since the discovery of graphene, 2-dimensional (2D) semiconductors like graphene oxide (GO) and tran...
International audienceInterfaces play critical roles in materials, and are usually both structurally...
Thomas G, Hütten A. Characterization of nano-magnetic structures. Nanostructured Materials. 1997;9(1...
Advanced material characterization (AMC) techniques are becoming popular because of continual innova...