We present a joint theoretical and experimental study of excited state dynamics in pure and hydrated anionic gold clusters Au\(^-_3\)[H\(_2\)O]\(_n\) (n = 0-2). We employ mixed quantum-classical dynamics combined with femtosecond time-resolved photoelectron spectroscopy in order to investigate the influence of hydration on excited state lifetimes and photo-dissociation dynamics. A gradual decrease of the excited state lifetime with the number of adsorbed water molecules as well as gold cluster fragmentation quenching by two or more water molecules are observed both in experiment and in simulations. Non-radiative relaxation and dissociation in excited states are found to be responsible for the excited state population depletion. Time constan...
Using TR-2PPE spectroscopy, direct evidence is provided that excited states of sp-metal clusters can...
Led by the vision of searching for suitable candidates for future applications in catalysis and ener...
A subtle change in the electronic structure of thiolate-protected noble metal nanoparticles can resu...
By using time-resolved photoelectron spectroscopy, decay of optically excited states of hydrated Au...
Electronic relaxation dynamics are measured on a femtosecond timescale in three types of anionic clu...
Clear mechanistic insights into excited state dynamics in thiolate-protected gold nanoclusters are v...
An ongoing controversy about water cluster anions concerns the electron-binding motif, whether the c...
An ongoing controversy about water cluster anions concerns the electron-binding motif, whether the c...
Excited-state properties of photonic materials play an important part in dictating the photocatalyti...
The electronic relaxation dynamics of size-selected (H2O)n–/(D2O)n[25 n 50] clusters have been stu...
Polynuclear Au(I) complexes continues to attract considerable attention because of their bright emi...
We have investigated the ultrafast electronic relaxation of Au−7 using time- resolved photoelectron...
The exact interaction between Au cores and surface ligands remains largely unknown because of the co...
Understanding the correlation between the atomic structure and optical properties of gold nanocluste...
Doctor of PhilosophyDepartment of ChemistryChristine AikensThiolate-protected noble metal nanopartic...
Using TR-2PPE spectroscopy, direct evidence is provided that excited states of sp-metal clusters can...
Led by the vision of searching for suitable candidates for future applications in catalysis and ener...
A subtle change in the electronic structure of thiolate-protected noble metal nanoparticles can resu...
By using time-resolved photoelectron spectroscopy, decay of optically excited states of hydrated Au...
Electronic relaxation dynamics are measured on a femtosecond timescale in three types of anionic clu...
Clear mechanistic insights into excited state dynamics in thiolate-protected gold nanoclusters are v...
An ongoing controversy about water cluster anions concerns the electron-binding motif, whether the c...
An ongoing controversy about water cluster anions concerns the electron-binding motif, whether the c...
Excited-state properties of photonic materials play an important part in dictating the photocatalyti...
The electronic relaxation dynamics of size-selected (H2O)n–/(D2O)n[25 n 50] clusters have been stu...
Polynuclear Au(I) complexes continues to attract considerable attention because of their bright emi...
We have investigated the ultrafast electronic relaxation of Au−7 using time- resolved photoelectron...
The exact interaction between Au cores and surface ligands remains largely unknown because of the co...
Understanding the correlation between the atomic structure and optical properties of gold nanocluste...
Doctor of PhilosophyDepartment of ChemistryChristine AikensThiolate-protected noble metal nanopartic...
Using TR-2PPE spectroscopy, direct evidence is provided that excited states of sp-metal clusters can...
Led by the vision of searching for suitable candidates for future applications in catalysis and ener...
A subtle change in the electronic structure of thiolate-protected noble metal nanoparticles can resu...