arXiv · 1105.2251
Ab initio electronic structure calculations of solid, solution-processed metallotetrabenzoporphyrins
Abstract
An ab initio study of the electronic structures of solid metallotetrabenzoporphyrins (MTBPs) utilized in organic transistors and photovoltaics is presented. Bandstructures, densities of states, and orbitals are calculated for H2, Cu, Ni, and Zn core substitutions of the unit cell of solid TBP, as deposited via soluble precursors that are thermally annealed to produce polycrystalline, semiconducting thin-films. While the unit cells of the studied MTBPs are nearly isomorphous, substitution of the core atoms alters the structure of the bands around the energy bandgap and the composition of the densities of states. Cu and Ni core substitutions introduce nearly-dispersionless energy bands near the valence and conduction band edges, respectively, that form acceptor or deep generation/recombination states.
Explore related subjects
Keep this discovery
Patrick B. Shea, Jerzy Kanicki. 2011-05-11. Ab initio electronic structure calculations of solid, solution-processed metallotetrabenzoporphyrins. https://doi.org/10.1063/1.3699371
Cite the original work for its findings. Save a collection to share your selection of sources.