Heteroleptic bis-diimine copper(I) complexes for applications in solar energy conversion
Author(s) -
Martina Sandroni,
Yann Pellegrin,
Fabrice Odobel
Publication year - 2016
Publication title -
comptes rendus chimie
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.653
H-Index - 76
eISSN - 1878-1543
pISSN - 1631-0748
DOI - 10.1016/j.crci.2015.06.008
Subject(s) - homoleptic , diimine , copper , photochemistry , dye sensitized solar cell , chemistry , materials science , combinatorial chemistry , nanotechnology , organic chemistry , metal , electrode , catalysis , electrolyte
The development of molecular materials for conversion of solar energy into electricity and fuels is one of the most active research areas, in which the light absorber plays a key role. In this article, we present a class of photo-sensitizers constituted by heteroleptic bis-diimine copper(I) complexes, whose features rely on their tunable MLCT excited states and earth abundant and environmentally friendly nature of copper. These properties make this class of dyes compatible with a sustainable development. Their synthesis through the HETPHEN strategy and the background of their photophysical properties as well as the recent advances in the fields of both dye-sensitized solar cells and photoinduced charge separation are presented. The presented examples prove that bis-diimine copper(I) complexes are valuable dyes to be used to build multicomponent arrays for long range electron transfer and for dye-sensitized solar cells. These examples illustrate that one major advantage of heteroleptic complexes is the possibility to finely tune their opto-electronic properties to a larger extent than homoleptic complexes
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