This chapter summarises recent applications of scanning transmission electron microscope (STEM) based imaging and analysis to characterise nanomaterials. We focus on two areas of nanoscience that have developed rapidly in recent years: two dimensional (2D) crystals and inorganic nanoparticles. The discovery of graphene has led to an explosion of interest in exploring the structure and properties of other 2D crystals. The STEM provides a powerful tool for obtaining local structural data for this new class of materials, aiding the transition from scientific curiosity to engineering applications. In contrast, inorganic nanoparticles are already widely applied in a range of applications, including catalysis, medical imaging and in solar cells. ...
Electron tomography in materials science has flourished with the demand to characterize nanoscale ma...
Small organic molecules are the foundation of chemistry, and correspondingly, unambiguous determinat...
Abstract Scanning transmission electron microscopy (STEM) has advanced rapidly in the last decade th...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
The scanning transmission electron microscope (STEM) is an invaluable tool for the characterization ...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
Nanotechnology is one of the most important areas of modern science, which already affects many aspe...
Here we review the scanning transmission electron microscopy (STEM) characterization technique and S...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
The smart engineering of novel semiconductor devices relies on the development of optimized function...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
Electron tomography in materials science has flourished with the demand to characterize nanoscale ma...
Small organic molecules are the foundation of chemistry, and correspondingly, unambiguous determinat...
Abstract Scanning transmission electron microscopy (STEM) has advanced rapidly in the last decade th...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
The scanning transmission electron microscope (STEM) is an invaluable tool for the characterization ...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
Nanotechnology is one of the most important areas of modern science, which already affects many aspe...
Here we review the scanning transmission electron microscopy (STEM) characterization technique and S...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
The smart engineering of novel semiconductor devices relies on the development of optimized function...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
Electron tomography in materials science has flourished with the demand to characterize nanoscale ma...
Small organic molecules are the foundation of chemistry, and correspondingly, unambiguous determinat...
Abstract Scanning transmission electron microscopy (STEM) has advanced rapidly in the last decade th...