In this thesis, the structural characterization of functional, especially crystalline microporous materials, was performed by electron diffraction tomography (EDT) technique using transmission electron microscope (TEM) and supported in combination with complementary methods. The structural elucidation of materials at the atomic level is a key step to understand their chemical and physical properties and is therefore of great importance for the development of specific applications and for the targeted design of novel materials with desired properties. Microporous materials show unique structural features - a periodic arrangement of cavities and channels with high internal surface areas. This type of material is suitable for numerous applica...
Many mineralogical phases, as well as new developed synthetic compounds, occur only in form of nano-...
The crystal structure determines the physical properties of a material. The structure can be analyse...
Structure elucidation is fundamental to understanding the chemical and physical properties of a mate...
Electron crystallography has recently become very successful for structural studies of materials wit...
Electron crystallography has evolved as a powerful method for structural characterization of a wide ...
The structural analysis serves as a bridge to link the structure of materials to their properties. R...
In this paper the reliability of structure solution of nano-crystalline porous compounds with prefer...
Ordered nanoporous structures are among the most fascinating and industrially important materials cu...
Ordered nanoporous structures are among the most fascinating and industrially important materials cu...
Zeolites are crystalline microporous aluminosilicates with well-defined cavities or channels of mole...
Several porous phases have been characterized in the last years by tomographic electron diffraction....
Twenty years ago, one of us embarked (Bursill, L. A.; Lodge, E. A.; Thomas, J. M. Zeolitic structure...
3D electron diffraction (3D ED) has evolved as a powerful method for ab initio structure determinati...
Electron crystallography is an important technique for studying micro- and nano-sized materials. It ...
Many mineralogical phases, as well as new developed synthetic compounds, occur only in form of nano-...
The crystal structure determines the physical properties of a material. The structure can be analyse...
Structure elucidation is fundamental to understanding the chemical and physical properties of a mate...
Electron crystallography has recently become very successful for structural studies of materials wit...
Electron crystallography has evolved as a powerful method for structural characterization of a wide ...
The structural analysis serves as a bridge to link the structure of materials to their properties. R...
In this paper the reliability of structure solution of nano-crystalline porous compounds with prefer...
Ordered nanoporous structures are among the most fascinating and industrially important materials cu...
Ordered nanoporous structures are among the most fascinating and industrially important materials cu...
Zeolites are crystalline microporous aluminosilicates with well-defined cavities or channels of mole...
Several porous phases have been characterized in the last years by tomographic electron diffraction....
Twenty years ago, one of us embarked (Bursill, L. A.; Lodge, E. A.; Thomas, J. M. Zeolitic structure...
3D electron diffraction (3D ED) has evolved as a powerful method for ab initio structure determinati...
Electron crystallography is an important technique for studying micro- and nano-sized materials. It ...
Many mineralogical phases, as well as new developed synthetic compounds, occur only in form of nano-...
The crystal structure determines the physical properties of a material. The structure can be analyse...
Structure elucidation is fundamental to understanding the chemical and physical properties of a mate...