| Literature DB >> 25588100 |
Kaitlyn M Faries1, James R Diers2, Joseph W Springer1, Eunkyung Yang1, Marcin Ptaszek3, Dorothée Lahaye3, Michael Krayer3, Masahiko Taniguchi3, Christine Kirmaier1, Jonathan S Lindsey3, David F Bocian2, Dewey Holten1.
Abstract
Efficient light harvesting for molecular-based solar-conversion systems requires absorbers that span the photon-rich red and near-infrared (NIR) regions of the solar spectrum. Reported herein are the photophysical properties of a set of six chlorin-imides and nine synthetic chlorin analogues that extend the absorption deeper (624-714 nm) into these key spectral regions. These absorbers help bridge the gap between typical chlorins and bacteriochlorins. The new compounds have high fluorescence quantum yields (0.15-0.34) and long singlet excited-state lifetimes (4.2-10.9 ns). The bathochromic shift in Qy absorption is driven by substituent-based stabilization of the lowest unoccupied molecular orbital, with the largest shifts for chlorins that bear an electron-withdrawing, conjugative group at the 3-position in combination with a 13,15-imide ring.Entities:
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Year: 2015 PMID: 25588100 DOI: 10.1021/jp511257w
Source DB: PubMed Journal: J Phys Chem B ISSN: 1520-5207 Impact factor: 2.991