Established and current research

Polymer modeling and simulation

Molecular simulation and electronic-structure theory provide a bridge between polymer structure, molecular motion, charge transport, and experimentally observable material behavior.

Connecting molecular structure with material behavior

Advances in computational methods and high-performance computing allow polymer simulations to guide, explain, and predict experiments involving macromolecular materials. The objective is not merely to reproduce a structure, but to identify the electronic and molecular mechanisms that control measurable behavior.

Current work emphasizes conjugated and conducting polymers, including PEDOT and related thiophene systems. These materials pose a demanding multiscale problem: local bond alternation, oxidation state, charge localization, intermolecular stacking, solvent, counterions, morphology, and nuclear motion can all affect transport.

Electronic structure

Polarons, bipolarons, benzenoid–quinoid character, orbital mixing, and the redistribution of charge upon oxidation.

Charge migration

Transfer along conjugated backbones and between stacked chains using real-time TDDFT, diabatic states, and tight-binding descriptions.

Structure and environment

Effects of stacking distance, conformational disorder, solvent, counterions, polymer morphology, and interfaces.

From calculation to mechanism

Useful predictions require several levels of description. Density-functional calculations establish structures and energetics; multireference methods test situations in which a single electronic configuration is insufficient; real-time propagation follows electronic response; and reduced models clarify how site energies, couplings, nuclear motion, and decoherence shape transport.

Central scientific question: Which structural and dynamical features promote long-lived, directional charge migration, and which instead produce localization or rapidly dephased fluctuations?

Contact

Scientific discussion and collaboration

Department of Chemistry · University of Connecticut

angelo.rossi@uconn.edu646-996-4145