Literature DB >> 30798441

Designing new quinoline-based organic photosensitizers for dye-sensitized solar cells (DSSC): a theoretical investigation.

Giovanny Carvalho Dos Santos1, Eliezer Fernando Oliveira2,3, Francisco Carlos Lavarda4, Luiz Carlos da Silva-Filho5.   

Abstract

In this work, 27 new quinoline-derivative dyes were proposed, and their geometries, electronic structures, and absorption spectra were investigated using density functional theory (DFT) calculations. An important feature found in most of the new compounds was that the lowest unoccupied molecular orbital (LUMO) was above the TiO2 conduction band, facilitating electron transfer from the excited dye to the semiconductor. The energy of the highest occupied molecular orbital (HOMO) was below the reduction potential energy of the electrolyte (I-/I3-), improving the charge regeneration process after photooxidation. Here we present compounds with a small band gap, favorable absorption properties, a D-π-A-type structure that exhibits maximum absorption above 540 nm, and a high light harvesting efficiency (LHE > 0.78). The results show that the compounds D1C, D2C, D3C, and R3C could be used as dye sensitizers for dye-sensitized solar cells (DSSCs).

Entities:  

Keywords:  DFT; Push-pull molecules; Quinoline derivatives

Year:  2019        PMID: 30798441     DOI: 10.1007/s00894-019-3958-y

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  1 in total

1.  Efficient model photosensitizers based on metallocenyl complexes with thiophene-N = N-pyrimidine as π-conjugated bridge and cyanoacrylate as an anchoring group: a density functional theory study.

Authors:  Amina C Berrekhchi-Berrahma; Michael Springborg; Meijuan Zhou; Abdelghani Haddou; Majda Sekkal Rahal
Journal:  J Mol Model       Date:  2022-07-07       Impact factor: 2.172

  1 in total

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