Inorganic metal-oxide clusters form a class of compounds that are unique in their topological and electronic versatility and are becoming increasingly more important in a variety of applications. Namely, Polyoxometalates (POMs) have shown an unmatched range of physical properties and the ability to form structures that can bridge several length scales. The formation of these molecular clusters is often ambiguous and is governed by self-assembly processes that limit our ability to rationally design such molecules. However, recent years have shown that by considering new building block principles the design and discovery of novel complex clusters is aiding our understanding of this process. Now with current progress in thiometalate chemistry,...
This thesis focuses on the reactivity of polyoxometalate (POM) building blocks; more specifically, t...
The synthetic engineering of anionic polyoxometalate (POM) clusters with predefined properties tailo...
The aim to both understand and control molecular self-assembly from the molecule up to the material ...
Despite the proliferation of tungstate and molybdate polyoxometalates (POMs) the inclusion of sulfid...
Despite the proliferation of tungstate and molybdate polyoxometalates (POMs) the inclusion of sulfid...
Polyoxometalates (POMs) are a family of self-assembled molecular clusters with an unmatched range of...
Polyoxometalates are clusters of metal-oxide units, comprising a large diversity of nanoscale struct...
Polyoxometalates (POMs) represent a class of metal-oxide units based upon oxides of Mo, W, V, and Nb...
Polyoxometalates (POMs) are a subset of metal oxides that represent a diverse range of molecular clu...
Polyoxometalates are clusters of metal-oxide units, comprising a large diversity of nanoscale struct...
Despite the proliferation of tungstate and molybdate polyoxometalates (POMs) the inclusion of sulfid...
Utilizing new experimental approaches and gradual understanding of the underlying chemical processes...
Utilizing new experimental approaches and gradual understanding of the underlying chemical processes...
We report the preparation and characterization of two new polyoxothiometalate species, {Mo16} = {(Mo...
This thesis focuses on the reactivity of polyoxometalate (POM) building blocks; more specifically, t...
This thesis focuses on the reactivity of polyoxometalate (POM) building blocks; more specifically, t...
The synthetic engineering of anionic polyoxometalate (POM) clusters with predefined properties tailo...
The aim to both understand and control molecular self-assembly from the molecule up to the material ...
Despite the proliferation of tungstate and molybdate polyoxometalates (POMs) the inclusion of sulfid...
Despite the proliferation of tungstate and molybdate polyoxometalates (POMs) the inclusion of sulfid...
Polyoxometalates (POMs) are a family of self-assembled molecular clusters with an unmatched range of...
Polyoxometalates are clusters of metal-oxide units, comprising a large diversity of nanoscale struct...
Polyoxometalates (POMs) represent a class of metal-oxide units based upon oxides of Mo, W, V, and Nb...
Polyoxometalates (POMs) are a subset of metal oxides that represent a diverse range of molecular clu...
Polyoxometalates are clusters of metal-oxide units, comprising a large diversity of nanoscale struct...
Despite the proliferation of tungstate and molybdate polyoxometalates (POMs) the inclusion of sulfid...
Utilizing new experimental approaches and gradual understanding of the underlying chemical processes...
Utilizing new experimental approaches and gradual understanding of the underlying chemical processes...
We report the preparation and characterization of two new polyoxothiometalate species, {Mo16} = {(Mo...
This thesis focuses on the reactivity of polyoxometalate (POM) building blocks; more specifically, t...
This thesis focuses on the reactivity of polyoxometalate (POM) building blocks; more specifically, t...
The synthetic engineering of anionic polyoxometalate (POM) clusters with predefined properties tailo...
The aim to both understand and control molecular self-assembly from the molecule up to the material ...