Abstract

Non-fullerene based organic compounds are considered promising materials for the fabrication of modern photovoltaic materials. Non-fullerene-based organic solar cells comprise of good photochemical and thermal stability along with longer device lifetimes as compared to fullerene-based compounds. Five new non-fullerene donor molecules were designed keeping in view the excellent donor properties of 3-bis(4-(2-ethylhexyl)-thiophen-2-yl)-5,7-bis(2ethylhexyl) benzo[1,2-:4,5-c′]-dithiophene-4,8-dione thiophene-alkoxy benzene-thiophene indenedione (BDD-IN) by end-capped modifications. Photovoltaic and electronic characteristics of studied molecules were determined by employing density functional theory (DFT) and time dependent density functional theory (TD-DFT). Subsequently, obtained results were compared with the reference molecule BDD-IN. The designed molecules presented lower energy difference (ΔΕ) in the range of 2.17–2.39 eV in comparison to BDD-IN (= 2.72 eV). Moreover, insight from the frontier molecular orbital (FMO) analysis disclosed that central acceptors are responsible for the charge transformation. The designed molecules were found with higher λmax values and lower transition energies than BDD-IN molecule due to stronger end-capped acceptors. Open circuit voltage (Voc) was observed in the higher range (1.54–1.78 V) in accordance with HOMOdonor–LUMOPC61BM by designed compounds when compared with BDD-IN (1.28 V). Similarly, lower reorganization energy values were exhibited by the designed compounds in the range of λe(0.00285–0.00370 Eh) and λh(0.00847–0.00802 Eh) than BDD-IN [λe(0.00700 Eh) and λh(0.00889 Eh)]. These measurements show that the designed compounds are promising candidates for incorporation into solar cell devices, which would benefit from better hole and electron mobility.

Highlights

  • Non-fullerene based organic compounds are considered promising materials for the fabrication of modern photovoltaic materials

  • Reference molecule of A2-π-A1-π-A2-type recently synthesized by Zhang et al.[26] is selected as BDD-IN in present quantum chemical investigation

  • To energy difference pattern, DMDC is reported with smaller transition energy value (1.69 eV) along with absorption peak value as 732 nm

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Summary

Introduction

Non-fullerene based organic compounds are considered promising materials for the fabrication of modern photovoltaic materials. Comprehensive in-silico studies of designed molecules (DDHF, DMDH, DMDC, DDTF and DDTC) are presented with characterization of important parameters like binding energy, transition matrix density (TDM), frontier molecular orbital (FMOs) analysis, reorganizational energy of holes and electrons, excitation energy, charge transfer analysis, open circuit voltage ­(Voc) and compared with BDD-IN as a reference molecule. These new non-fullerene donors (NFDs) are predicted to have improved optoelectronic properties and potential to be used in the generation of solar cells

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