August 5, 2013
Journal Article

Direct Delocalization for Calculating Electron Transfer in Fullerenes

Abstract

A method is introduced for simple calculation of charge transfer between very large solvated organic dimers (fullerenes here) from isolated dimer calculations. The individual monomers in noncentrosymmetric dimers experience different chemical environments, so that the dimers do not necessarily represent bulk-like molecules. Therefore, we apply a delocalizing bias directly to the Fock matrix of the dimer system, and verify that this is almost as accurate as self-consistent solvation. As large molecules like fullerenes have a plethora of excited states, the initially excited state orbitals are thermally populated, so that the rate is obtained as a thermal average over Marcus thermal transfers.

Revised: December 30, 2015 | Published: August 5, 2013

Citation

Arntsen C.D., R. Reslan, S. Hernandez, Y. Gao, and D. Neuhauser. 2013. Direct Delocalization for Calculating Electron Transfer in Fullerenes. International Journal of Quantum Chemistry 113, no. 15:1885–1889. doi:10.1002/qua.24409