Self-assembled colloidal crystals have attracted major attention because of their potential as low-cost three-dimensional (3D) photonic crystals. Although a high degree of perfection is crucial for the properties of these materials, little is known about their exact structure and internal defects. In this study, we use tomographic scanning transmission X-ray microscopy (STXM) to access the internal structure of self-assembled colloidal photonic crystals with high spatial resolution in three dimensions for the first time. The positions of individual particles of 236 nm in diameter are identified in three dimensions, and the local crystal structure is revealed. Through image analysis, structural defects, such as vacancies and stacking faults,...
Using microradian X-ray diffraction, we investigated the crystal structure of convectively assembled...
Ptychographic coherent X-ray imaging is applied to obtain a projection of the electron density of co...
Ptychographic coherent X-ray imaging is applied to obtain a projection of the electron density of co...
Self-assembled colloidal crystals have attracted major attention because of their potential as low-c...
Self-assembled colloidal crystals have attracted major attention because of their potential as low-c...
Photonic crystals consisting of nano-to micrometer-sized building blocks, such as multiple sorts of ...
Three-dimensionally ordered macroporous (3DOM) materials, also known as inverse opals, have been ext...
\u3cp\u3eThe self-assembly of different nanocrystals into a binary superlattice is of interest for b...
The self-assembly of different nanocrystals into a binary superlattice is of interest for both collo...
For the structural characterization of the polystyrene (PS)-based photonic crystals (PCs), fast and ...
We demonstrate the direct three-dimensional imaging of densely packed colloidal nanostructures using...
The self-assembly of different nanocrystals into a binary superlattice is of interest for both collo...
In this thesis, we present experimental work on the characterization of photonic colloidal crystals ...
Using microradian X-ray diffraction, we investigated the crystal structure of convectively assembled...
Ptychographic coherent X-ray imaging is applied to obtain a projection of the electron density of co...
Ptychographic coherent X-ray imaging is applied to obtain a projection of the electron density of co...
Self-assembled colloidal crystals have attracted major attention because of their potential as low-c...
Self-assembled colloidal crystals have attracted major attention because of their potential as low-c...
Photonic crystals consisting of nano-to micrometer-sized building blocks, such as multiple sorts of ...
Three-dimensionally ordered macroporous (3DOM) materials, also known as inverse opals, have been ext...
\u3cp\u3eThe self-assembly of different nanocrystals into a binary superlattice is of interest for b...
The self-assembly of different nanocrystals into a binary superlattice is of interest for both collo...
For the structural characterization of the polystyrene (PS)-based photonic crystals (PCs), fast and ...
We demonstrate the direct three-dimensional imaging of densely packed colloidal nanostructures using...
The self-assembly of different nanocrystals into a binary superlattice is of interest for both collo...
In this thesis, we present experimental work on the characterization of photonic colloidal crystals ...
Using microradian X-ray diffraction, we investigated the crystal structure of convectively assembled...
Ptychographic coherent X-ray imaging is applied to obtain a projection of the electron density of co...
Ptychographic coherent X-ray imaging is applied to obtain a projection of the electron density of co...