Heteronanoparticles represent a new class of nanomaterials exhibiting multifunctional and collective properties, which could find applications in medical imaging and therapy, catalysis, photovoltaics, and electronics. This present work demonstrates the intrinsic heteroepitaxial linkage in heterodimer nanoparticles to enable interaction of the individual components across their interface. It revealed distinct differences between Au@MnO and Au@Fe<sub>3</sub>O<sub>4</sub> regarding the synthetic procedure and growth kinetics, as well as the properties to be altered by the variation of the electronic structure of the metal oxides. The chemically related metal oxides differ concerning their band gap; while MnO is a Mott-Hubbard insulator with a ...
Colloidal magneto-plasmonic nanostructures are multifunctional materials with huge potential for app...
In this thesis, nano-sized metal/oxide interfaces are fabricated to determine the size dependence of...
The relatively recent discovery that plasmonic nanoparticles generate energetic electron-hole pairs ...
Colloidal nanocrystal heterodimers composed of a plasmonic and a magnetic domain have been widely st...
Heterostructured nanoparticles composed of metals and Fe3O 4 or MnO were synthesized by thermal deco...
Heterostructured nanoparticles composed of metals and Fe3O4 or MnO were synthesized by thermal decom...
Understanding how nanoscale interfaces affect electrical and optical properties of multifunctional n...
Colloidal nanocrystal heterodimers composed of a plasmonic and a magnetic domain have been widely st...
The rational design of complex nanostructures is of paramount importance to gain control over their ...
We report on the unprecedented direct observation of spin-polarization transfer across colloidal mag...
The recent discovery that metal nanoparticles can generate hot carriers upon light excitation is see...
In the present study, the growth of Ag domains on the surface of MnO octapods yielded a uniform MnO ...
We report on the unprecedented direct observation of spin-polarization transfer across colloidal mag...
This work provides a mechanistic understanding of hot-electron-based catalysis on Au nanoparticles (...
Dumbbell-like Fe3O4-Au superparamagnetic nanoparticles exhibit enhanced electromagnetic losses at gi...
Colloidal magneto-plasmonic nanostructures are multifunctional materials with huge potential for app...
In this thesis, nano-sized metal/oxide interfaces are fabricated to determine the size dependence of...
The relatively recent discovery that plasmonic nanoparticles generate energetic electron-hole pairs ...
Colloidal nanocrystal heterodimers composed of a plasmonic and a magnetic domain have been widely st...
Heterostructured nanoparticles composed of metals and Fe3O 4 or MnO were synthesized by thermal deco...
Heterostructured nanoparticles composed of metals and Fe3O4 or MnO were synthesized by thermal decom...
Understanding how nanoscale interfaces affect electrical and optical properties of multifunctional n...
Colloidal nanocrystal heterodimers composed of a plasmonic and a magnetic domain have been widely st...
The rational design of complex nanostructures is of paramount importance to gain control over their ...
We report on the unprecedented direct observation of spin-polarization transfer across colloidal mag...
The recent discovery that metal nanoparticles can generate hot carriers upon light excitation is see...
In the present study, the growth of Ag domains on the surface of MnO octapods yielded a uniform MnO ...
We report on the unprecedented direct observation of spin-polarization transfer across colloidal mag...
This work provides a mechanistic understanding of hot-electron-based catalysis on Au nanoparticles (...
Dumbbell-like Fe3O4-Au superparamagnetic nanoparticles exhibit enhanced electromagnetic losses at gi...
Colloidal magneto-plasmonic nanostructures are multifunctional materials with huge potential for app...
In this thesis, nano-sized metal/oxide interfaces are fabricated to determine the size dependence of...
The relatively recent discovery that plasmonic nanoparticles generate energetic electron-hole pairs ...