Using first-principles simulations, we investigated the initial steps of the self-aggregation of the dye pseudoisocyanine (PLC) in water. First, we performed molecular dynamics (MD) simulations of the self-aggregation process, in which pile-of-coins oligomers ranging from dimers to stacks of about 20 molecules formed. The oligomer structures were found to be very flexible, with the dimers entering a weakly coupled state and then returning to a stable pi-pi stacked conformation on a nanosecond time scale. The structural information from the MD simulations was combined with quantum chemical calculations to generate a time-dependent Frenkel exciton Hamiltonian for monomers, dimers, and trimers, which included vibronic coupling. This Hamiltonia...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
We perform molecular dynamics (MD) simulations of the self-assembly process of pseudoisocyanine dye ...
We perform molecular dynamics (MD) simulations of the self-assembly process of pseudoisocyanine dye ...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
We perform molecular dynamics (MD) simulations of the self-assembly process of pseudoisocyanine dye ...
We perform molecular dynamics (MD) simulations of the self-assembly process of pseudoisocyanine dye ...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using first-principles simulations, we investigated the initial steps of the self-aggregation of the...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
We perform molecular dynamics (MD) simulations of the self-assembly process of pseudoisocyanine dye ...
We perform molecular dynamics (MD) simulations of the self-assembly process of pseudoisocyanine dye ...