In molecular nanotechnology, a single molecule is envisioned to act as the basic building block of electronic devices. Such devices may be of special interest for organic photovoltaics, data storage, and smart materials. However, more often than not the molecular function is quenched upon contact with a conducting support. Trial-and-error-based decoupling strategies via molecular functionalisation and change of substrate have in many instances proven to yield unpredictable results. The adsorbate-substrate interactions that govern the function can be understood with the help of rst-principles simulation. Employing dispersion-corrected Density-Functional Theory (DFT) and linear expansion Delta-Self-Consistent-Field DFT, the electronic structu...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
We propose to utilize azobenzene as a nanomolecular switch which can be triggered by transmitting el...
We investigate the surface-catalyzed dissociation of the archetypal molecular switch azobenzene on t...
In molecular nanotechnology, a single molecule is envisioned to act as the basic building block of e...
We present a detailed comparison of the S0, S1 (n → π*) and S2 (π → π*) potential energy surfaces (P...
Accurate and efficient simulation of excited state properties is an important and much aspired corne...
Molecular switches represent a fascinating class of functional molecules, whose properties can be re...
Molecular switches represent a fascinating class of functional molecules, whose properties can be re...
We examine the influence of the adsorption geometry and electronic coupling between azobenzene-based...
We use different semiempirical dispersion correction schemes to assess the role of long-range van de...
We present a successful attempt of decoupling a dye molecule from a metallic surface via physisorpti...
Jaekel S, Richter A, Lindner R, et al. Reversible and Efficient Light-Induced Molecular Switching on...
Jaekel S, Richter A, Lindner R, et al. Reversible and Efficient Light-Induced Molecular Switching on...
We use time-resolved two-photon photoemission to study two molecular photoswitches at the Au(111) su...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
We propose to utilize azobenzene as a nanomolecular switch which can be triggered by transmitting el...
We investigate the surface-catalyzed dissociation of the archetypal molecular switch azobenzene on t...
In molecular nanotechnology, a single molecule is envisioned to act as the basic building block of e...
We present a detailed comparison of the S0, S1 (n → π*) and S2 (π → π*) potential energy surfaces (P...
Accurate and efficient simulation of excited state properties is an important and much aspired corne...
Molecular switches represent a fascinating class of functional molecules, whose properties can be re...
Molecular switches represent a fascinating class of functional molecules, whose properties can be re...
We examine the influence of the adsorption geometry and electronic coupling between azobenzene-based...
We use different semiempirical dispersion correction schemes to assess the role of long-range van de...
We present a successful attempt of decoupling a dye molecule from a metallic surface via physisorpti...
Jaekel S, Richter A, Lindner R, et al. Reversible and Efficient Light-Induced Molecular Switching on...
Jaekel S, Richter A, Lindner R, et al. Reversible and Efficient Light-Induced Molecular Switching on...
We use time-resolved two-photon photoemission to study two molecular photoswitches at the Au(111) su...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
We propose to utilize azobenzene as a nanomolecular switch which can be triggered by transmitting el...
We investigate the surface-catalyzed dissociation of the archetypal molecular switch azobenzene on t...