A single-particle density matrix approach is introduced to simulate the dynamics of heterogeneous electron transfer (ET) processes at interfaces. The characterization of the systems is based on a model Hamiltonian parametrized by electronic structure calculations and a partitioning method. The method is applied to investigate ET in a series of nitrile-substituted (poly)(p-phenylene)thiolate self-assembled monolayers adsorbed at the Au(111) surface. The results show a significant dependence of the ET on the orbital symmetry of the donor state and on the molecular and electronic structure of the spacer.
CITATION STYLE
Prucker, V., Bockstedte, M., Thoss, M., & Coto, P. B. (2018). Dynamical simulation of electron transfer processes in self-assembled monolayers at metal surfaces using a density matrix approach. Journal of Chemical Physics, 148(12). https://doi.org/10.1063/1.5020238
Mendeley helps you to discover research relevant for your work.