Structure and dynamics of solvent shells around photoexcited metal complexes†
Abstract
Understanding the geometry, energetics and dynamics of solvated transition metal (TM) compounds is decisive in characterizing and optimizing their function. Here, we demonstrate that it is possible to quantify the structural dynamics of solvated [RuII(bpy)3], an important TM-complex for solar-energy harvesting research, by using state-of-the art force fields together with molecular simulations. Electronic excitation to [RuIII(bpy)3] leads to a nonequilibrium system in which excess energy is redistributed to the surrounding