Empty spaces are abhorred by nature, which immediately rushes in to fill the void. Humans have learnt pretty well how to make ordered empty nanocontainers, and to get useful products out of them. When such an order is imparted to molecules, new properties may appear, often yielding advanced applications. This review illustrates how the organized void space inherently present in various materials: zeolites, clathrates, mesoporous silica/organosilica, and metal organic frameworks (MOF), for example, can be exploited to create confined, organized, and self-assembled supramolecular structures of low dimensionality. Features of the confining matrices relevant to organization are presented with special focus on molecular-level aspects. Selected e...
We describe herein the hierarchical self-assembly of discrete supramolecular metallacycles into orde...
A tough challenge in nanomaterials chemistry is the determination of the structure of multicomponent...
A tough challenge in nanomaterials chemistry is the determination of the structure of multicomponent...
Empty spaces are abhorred by nature, which immediately rushes in to fill the void. Humans have learn...
New phenomena, properties, and functions contributing to advanced sciences can be discovered, examin...
Nanocontainers, i.e. particles at the micro and nano scale that can host guest molecules, are of hig...
Unexplored science and functions can be found within the well-structured confined spaces of mesoporo...
Since the serendipitous event that led to the first synthesis of a molecule by the hands of Man in 1...
The supramolecular organisation of molecules, complexes or clusters is a fruitful concept for the de...
Author's preprint version of the manuscript:<div>"Supramolecular organization in confined nanospaces...
An enormous number and variety of discrete, isolable, supramolecular-coordination-chemistry-based as...
Zeolites and mesoporous silica are versatile host materials for the supramolecular organization of a...
The self-assembly of small molecules into large, functional nanostructures has led to the constructi...
Ordered porous inorganic compounds can now be synthesized with pore sizes between 0.3 nm and several...
A tough challenge in nanomaterials chemistry is the determination of the structure of multicomponen...
We describe herein the hierarchical self-assembly of discrete supramolecular metallacycles into orde...
A tough challenge in nanomaterials chemistry is the determination of the structure of multicomponent...
A tough challenge in nanomaterials chemistry is the determination of the structure of multicomponent...
Empty spaces are abhorred by nature, which immediately rushes in to fill the void. Humans have learn...
New phenomena, properties, and functions contributing to advanced sciences can be discovered, examin...
Nanocontainers, i.e. particles at the micro and nano scale that can host guest molecules, are of hig...
Unexplored science and functions can be found within the well-structured confined spaces of mesoporo...
Since the serendipitous event that led to the first synthesis of a molecule by the hands of Man in 1...
The supramolecular organisation of molecules, complexes or clusters is a fruitful concept for the de...
Author's preprint version of the manuscript:<div>"Supramolecular organization in confined nanospaces...
An enormous number and variety of discrete, isolable, supramolecular-coordination-chemistry-based as...
Zeolites and mesoporous silica are versatile host materials for the supramolecular organization of a...
The self-assembly of small molecules into large, functional nanostructures has led to the constructi...
Ordered porous inorganic compounds can now be synthesized with pore sizes between 0.3 nm and several...
A tough challenge in nanomaterials chemistry is the determination of the structure of multicomponen...
We describe herein the hierarchical self-assembly of discrete supramolecular metallacycles into orde...
A tough challenge in nanomaterials chemistry is the determination of the structure of multicomponent...
A tough challenge in nanomaterials chemistry is the determination of the structure of multicomponent...