Dynamical simulation of electron transfer processes in self-assembled monolayers at metal surfaces using a density matrix approach

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Abstract

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.

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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

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