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Molecular modeling of 3,4-pyridinedicarbonitrile dye sensitizer for solar cells using quantum chemical calculations
Authors:M. Geetha  P. Senthil Kumar  K. Vasudevan  A. Prakasam  G. Meenakshi  P.M. Anbarasan
Affiliation:1. Department of Physics, Periyar University, Salem 636 011, Tamil Nadu, India;2. Department of Physics, K.M.C.P.G.S, Lawspet, Puducherry 605 008, India
Abstract:The geometries, electronic structures, polarizabilities, and hyperpolarizabilities of organic dye sensitizer 3,4-pyridinedicarbonitrile was studied based on Hartree–Fock (HF) and density functional theory (DFT) using the hybrid functional B3LYP. Ultraviolet–visible (UV–Vis) spectrum was investigated by time dependent DFT (TD-DFT). Features of the electronic absorption spectrum in the visible and near-UV regions were assigned based on TD-DFT calculations. The absorption bands are assigned to π  π1 transitions. Calculated results suggest that the three lowest energy excited states are due to photoinduced electron transfer processes. The interfacial electron transfer between semiconductor TiO2 electrode and 3,4-pyridinedicarbonitrile is due to electron injection process from excited dye to the semiconductor’s conduction band. The role of cyanine in 3,4-pyridinedicarbonitrile in geometries, electronic structures, and spectral properties were analyzed.
Keywords:Dye sensitizer  Density functional theory  Vibrational spectra  Electronic structure  Absorption spectrum
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