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Title: Effect of electron withdrawing unit for dye-sensitized solar cell based on D-A-π-A organic dyes

Highlights: • To gain the red-shifted absorption spectra, withdrawing unit was substituted in dye. • By the introduction of additional withdrawing unit, LUMOs level of dye are decreased. • Decreasing LUMOs level of dye caused the red-shifted absorption spectra of dye. • Novel acceptor, DCRD, showed better photovoltaic properties than cyanoacetic acid. - Abstract: In this work, two novel D-A-π-A dye sensitizers with triarylamine as an electron donor, isoindigo and cyano group as electron withdrawing units and cyanoacetic acid and 2-(1,1-dicyanomethylene) rhodanine as an electron acceptor for an anchoring group (TICC, TICR) were designed and investigated with the ID6 dye as the reference. The difference in HOMO and LUMO levels were compared according to the presence or absence of isoindigo in ID6 (TC and ID6). To gain insight into the factors responsible for photovoltaic performance, we used density functional theory (DFT) and time-dependent density functional theory (TDDFT) calculations. Owing to different LUMO levels for each acceptor, the absorption band and molar extinction coefficient of each dye was different. Among the dyes, TICR showed more red-shifted and broader absorption spectra than other dyes and had a higher molar extinction coefficient than the reference. It is expected that TICR would show bettermore » photovoltaic properties than the other dyes, including the reference dye.« less
Authors:
;  [1] ;  [1] ;  [2]
  1. Department of Information Display, Hongik University, Seoul 121-791 (Korea, Republic of)
  2. (Korea, Republic of)
Publication Date:
OSTI Identifier:
22420578
Resource Type:
Journal Article
Resource Relation:
Journal Name: Materials Research Bulletin; Journal Volume: 58; Conference: IFFM2013: International forum on functional materials, Jeju City (Korea, Republic of), 27-29 Jun 2013; Other Information: Copyright (c) 2014 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Country of Publication:
United States
Language:
English
Subject:
36 MATERIALS SCIENCE; ABSORPTION SPECTRA; BINDING ENERGY; COMPARATIVE EVALUATIONS; CYANINE DYES; DENSITY FUNCTIONAL METHOD; ELECTRONS; GAIN; PHOTOVOLTAIC EFFECT; RED SHIFT; SENSITIZERS; SOLAR CELLS; TIME DEPENDENCE; VALENCE