Isotruxene-Derived Cone-Shaped Organic Dyes for Dye-Sensitized Solar Cells
Author(s) -
ShihHsun Lin,
YingChan Hsu,
Jiann T. Lin,
ChengKai Lin,
JyeShane Yang
Publication year - 2010
Publication title -
the journal of organic chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.2
H-Index - 228
eISSN - 1520-6904
pISSN - 0022-3263
DOI - 10.1021/jo101831p
Subject(s) - chemistry , dye sensitized solar cell , ruthenium , organic solar cell , acceptor , energy conversion efficiency , open circuit voltage , photochemistry , homo/lumo , absorption (acoustics) , organic dye , anode , optoelectronics , chemical engineering , electrode , voltage , organic chemistry , molecule , catalysis , materials science , electrolyte , composite material , polymer , physics , quantum mechanics , engineering , condensed matter physics
The synthesis, electronic properties, and performance in dye-sensitized solar cells (DSSCs) of four cone-shaped organic dyes (ITD, ITD-Th, ITD-Hx, and ITD-OM) containing the isotruxene π-scaffold are reported. Selective substitution of the unsymmetrical isotruxene core with two diarylamino donors and one cyanocarboxylic acid acceptor was achieved by using a prefunctionalized dibromoisotruxene building block. The ortho-para-branched isotruxene core allows strong electronic couplings among the donors and the acceptor, leading to red-shifted absorption profiles with significant charge-transfer character. All four isotruxene dyes display reversible anodic waves in cyclic voltammagrams with both HOMO and LUMO potentials suitable for application in DSSCs. The DSSCs fabricated with these cone-shaped organic dyes exhibited high open-circuit voltages (0.67-0.76 V) and fill factors (0.67-0.72) with a power conversion efficiency (η) up to 5.45%, which is 80% of the ruthenium dye N719-based standard cell fabricated and measured under the same conditions.
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