Access to multifunctionality at the nanoscale requires the development of hybrid nanostructures that combine materials of different natures. In this line of thought, current research on coordination polymers is not only focusing on their synthesis at the nanoscale, but also on combining these polymers with other materials. According to a novel and rational approach, single-layer Au@Prussian blue analogue (PBA) and double-layer Au@PBA@PBA′ core–shell nanoparticles (NPs) may be obtained through the growth of a cyano-bridged coordination network on the gold surface. The nanosized heterostructures combine the plasmonic optical properties of the gold core and the magnetic properties of the PBA shell. Whereas the single-layer nanoparticles are pa...
International audienceThe field of coordination nanoparticles (CNP) emerged only a few years ago due...
I hereby declare that I composed this thesis myself and that all research detailed within it, unless...
International audiencePrussian Blue Analogue@Au–Ag nanoparticles: Effect on the magnetic properties ...
Access to multifunctionality at the nanoscale requires the development of hybrid nanostructures that...
We report a new approach for the synthesis of multifunctional Au core@Prussian Blue analogous (PBA) ...
Core–shell gold@Prussian blue analogue nanoparticles that exhibit plasmonic and magnetic properties ...
Gold@Preußischblau-Kern@Schale-Nanopartikel mit plasmonischen und magnetischen Eigenschaften wurden ...
International audienceNanoheterostructures combining Prussian blue (PB) or Prussian blue analogues (...
We have developed a general protocol for the preparation of hybrid nanostructures formed by nanopart...
Coordination polymers have many attractive properties but the development of applications has been h...
The hetero-bimetallic mixed valence metal polycyanides (Prussian Blue analogues (PBAs)) with formula...
International audiencePrussian Blue Analog (PBA) nanoparticles were formed on a heterogeneous nanost...
Prussian blue (PB) is the oldest coordination network discovered around 1706. This molecule-based ma...
Porous Prussian blue (PB), the oldest synthetic coordination compound, is a classic and fascinating ...
Although porous materials based on coordination compounds, including metal-organic frameworks (MOFs)...
International audienceThe field of coordination nanoparticles (CNP) emerged only a few years ago due...
I hereby declare that I composed this thesis myself and that all research detailed within it, unless...
International audiencePrussian Blue Analogue@Au–Ag nanoparticles: Effect on the magnetic properties ...
Access to multifunctionality at the nanoscale requires the development of hybrid nanostructures that...
We report a new approach for the synthesis of multifunctional Au core@Prussian Blue analogous (PBA) ...
Core–shell gold@Prussian blue analogue nanoparticles that exhibit plasmonic and magnetic properties ...
Gold@Preußischblau-Kern@Schale-Nanopartikel mit plasmonischen und magnetischen Eigenschaften wurden ...
International audienceNanoheterostructures combining Prussian blue (PB) or Prussian blue analogues (...
We have developed a general protocol for the preparation of hybrid nanostructures formed by nanopart...
Coordination polymers have many attractive properties but the development of applications has been h...
The hetero-bimetallic mixed valence metal polycyanides (Prussian Blue analogues (PBAs)) with formula...
International audiencePrussian Blue Analog (PBA) nanoparticles were formed on a heterogeneous nanost...
Prussian blue (PB) is the oldest coordination network discovered around 1706. This molecule-based ma...
Porous Prussian blue (PB), the oldest synthetic coordination compound, is a classic and fascinating ...
Although porous materials based on coordination compounds, including metal-organic frameworks (MOFs)...
International audienceThe field of coordination nanoparticles (CNP) emerged only a few years ago due...
I hereby declare that I composed this thesis myself and that all research detailed within it, unless...
International audiencePrussian Blue Analogue@Au–Ag nanoparticles: Effect on the magnetic properties ...